BBa_S04336
1
BBa_S04336
K199106:K199001
2009-11-18T12:00:00Z
2015-05-08T01:14:38Z
false
false
_9_
0
5562
9
Not in stock
false
false
Mary Gearing
component2062794
1
BBa_K199106
component2062798
1
BBa_K199001
annotation2062794
1
BBa_K199106
range2062794
1
1
49
annotation2062798
1
BBa_K199001
range2062798
1
58
200
BBa_B0030
1
BBa_B0030
RBS.1 (strong) -- modified from R. Weiss
2003-01-31T12:00:00Z
2015-08-31T04:07:20Z
Released HQ 2013
Strong RBS based on Ron Weiss thesis. Strength is considered relative to <bb_part>BBa_B0031</bb_part>, <bb_part>BBa_B0032</bb_part>, <bb_part>BBa_B0033</bb_part>.
false
true
_44_46_
0
24
7
In stock
false
Varies from -6 to +1 region from original sequence to accomodate BioBricks suffix ("orig" in figure 4-14 of Ron Weiss thesis). <p>No secondary structures are formed in the given RBS region. Users should check for secondary structures induced in the RBS by upstream and downstream elements in the +50 to -50 region, as such structures will greatly affect the strength of the RBS.
Contact info <a href="mailto:(bchow@media.mit.edu)">Brian Chow</a>
true
Vinay S Mahajan, Voichita D. Marinescu, Brian Chow, Alexander D Wissner-Gross and Peter Carr IAP, 2003.
annotation1701
1
RBS-1\Strong
range1701
1
1
15
annotation7025
1
BBa_B0030
range7025
1
1
15
annotation1702
1
RBS
range1702
1
8
12
BBa_R0062
1
lux pR
Promoter (luxR & HSL regulated -- lux pR)
2003-01-31T12:00:00Z
2015-05-08T01:14:15Z
<em>V. fischeri</em>
Released HQ 2013
Promoter activated by LuxR in concert with HSL</p> <p>The lux cassette of V. fischeri contains a left and a right promoter. The right promoter gives weak constitutive expression of downstream genes.This expression is up-regulated by the action of the LuxR activator protein complexed with the autoinducer, 3-oxo-hexanoyl-HSL. Two molecules of LuxR protein form a complex with two molecules of the signalling compound homoserine lactone (HSL). This complex binds to a palindromic site on the promoter, increasing the rate of transcription.
false
true
_1_
0
24
7
In stock
false
<P> <P>This promoter is based on the <em>Vibrio fischeri </em>quorum sensing gene promoters. Two genes LuxI and LuxR and transcribed in opposite directions as shown below. The original sequence from which the parts <bb_part>BBa_R0062</bb_part> and <bb_part>BBa_R0063</bb_part> were derived is shown in the picture below. <p><img src="<bb_file>Image1.gif</bb_file>" width="614" height="362"><P>
true
Vinay S Mahajan, Voichita D. Marinescu, Brian Chow, Alexander D Wissner-Gross and Peter Carr
annotation2048
1
start
range2048
1
53
53
annotation2047
1
-10
range2047
1
42
47
annotation7070
1
BBa_R0062
range7070
1
1
55
annotation2046
1
-35
range2046
1
20
25
annotation2045
1
LuxR/HSL
range2045
1
1
20
BBa_B0012
1
BBa_B0012
TE from coliphageT7
2003-01-31T12:00:00Z
2015-08-31T04:07:20Z
Derived from the TE terminator of T7 bacteriophage between Genes 1.3 and 1.4 <genbank>V01146</genbank>.
Released HQ 2013
Transcription terminator for the <i>E.coli</i> RNA polymerase.
false
false
_1_
0
24
7
In stock
false
<P> <P>Suggested by Sri Kosuri and Drew Endy as a high efficiency terminator. The 5' end cutoff was placed immediately after the TAA stop codon and the 3' end cutoff was placed just prior to the RBS of Gene 1.4 (before AAGGAG).<P> Use anywhere transcription should be stopped when the gene of interest is upstream of this terminator.
false
Reshma Shetty
annotation1687
1
stop
range1687
1
34
34
annotation1690
1
polya
range1690
1
28
41
annotation1686
1
T7 TE
range1686
1
8
27
annotation7020
1
BBa_B0012
range7020
1
1
41
BBa_S04334
1
BBa_S04334
K199106:K199028
2009-11-18T12:00:00Z
2015-05-08T01:14:38Z
false
false
_9_
0
5562
9
Not in stock
false
false
Mary Gearing
component2062784
1
BBa_K199106
component2062788
1
BBa_K199028
annotation2062788
1
BBa_K199028
range2062788
1
58
200
annotation2062784
1
BBa_K199106
range2062784
1
1
49
BBa_C0062
1
luxr
luxR repressor/activator, (no LVA?)
2003-01-31T12:00:00Z
2015-08-31T04:07:23Z
<em>V. fischeri</em> <genbank>AF170104</genbank>
Released HQ 2013
In complex with HSL, LuxR binds to the Lux promoter, activating transcription from Pr <bb_part>BBa_R0062</bb_part>, and repressing transcription from Pl <bb_part>BBa_R0063</bb_part>. <p>The lux cassette of V. fischeri contains a left and a right promoter. The right promoter gives weak constitutive expression of downstream genes.This expression is up-regulated by the action of the Lux activator, LuxR complexed to HSL. Two molecules of LuxR protein form a complex with two molecules the signalling compound homoserine lactone (HSL). This complex binds to a palindromic site on the promoter, increasing the rate of transcription.</p>
false
true
_1_
0
24
7
In stock
false
<P> <P>2 silent point mutants were introduced in the coding sequence to remove internal XbaI and PstI sites. Mutation sites were chosen to replace codons commonly used in <em>E. coli</em> with codons used at a similar frequency. <P>
true
Vinay S Mahajan, Voichita D. Marinescu, Brian Chow, Alexander D Wissner-Gross and Peter Carr
annotation2213986
1
Help:Barcodes
range2213986
1
757
781
annotation7039
1
BBa_C0062
range7039
1
1
756
annotation1762
1
prefix
range1762
1
1
2
annotation1765
1
A
range1765
1
492
492
annotation1766
1
luxR
range1766
1
1
750
annotation1764
1
T
range1764
1
174
174
BBa_B0034
1
BBa_B0034
RBS (Elowitz 1999) -- defines RBS efficiency
2003-01-31T12:00:00Z
2015-08-31T04:07:20Z
Released HQ 2013
RBS based on Elowitz repressilator.
false
true
_1_
0
24
7
In stock
false
Varies from -6 to +1 region from original sequence to accomodate BioBricks suffix. <p>No secondary structures are formed in the given RBS region. Users should check for secondary structures induced in the RBS by upstream and downstream elements in the +50 to -50 region, as such structures will greatly affect the strength of the RBS.
Contact info for this part: <a href="mailto:(bchow@media.mit.edu)">Brian Chow</a>
true
Vinay S Mahajan, Voichita D. Marinescu, Brian Chow, Alexander D Wissner-Gross and Peter Carr IAP, 2003.
annotation23325
1
conserved
range23325
1
5
8
BBa_K199106
1
BBa_K199106
pLpp promoter
2009-11-18T12:00:00Z
2015-05-08T01:11:20Z
The sequence matches that naturally found in E. coli.
The lpp promoter is one of the strongest promoters in E. coli.
false
false
_295_
0
5562
9
Not in stock
false
n/a
false
Mary Gearing
BBa_J100011
1
BBa_J100011
pLpp-tRNA CCACU-pLpp-tRNA CUAGU-pLpp-tRNA CGGUC
2011-06-08T11:00:00Z
2015-08-31T04:08:21Z
N/A
Produces suppressor tRNAs CCACU, CUAGU, and CGGUC, each under regulation of the lpp promoter.
false
false
_578_
0
5111
9
Not in stock
false
N/A
false
Eric Sawyer
component2120815
1
BBa_S04336
component2120821
1
BBa_S04334
component2120809
1
BBa_S04333
annotation2120809
1
BBa_S04333
range2120809
1
1
200
annotation2120821
1
BBa_S04334
range2120821
1
417
616
annotation2120815
1
BBa_S04336
range2120815
1
209
408
BBa_K199002
1
BBa_K199002
CCACU tRNA Suppressor (Produces Serine)
2009-06-25T11:00:00Z
2015-05-08T01:11:18Z
De Novo synthesis from oligos. Based on the paper by Anderson et al. (http://gcat.davidson.edu/GcatWiki/images/6/6f/AndersonSchultz2002ChemBiol.pdf)
This gene encodes for a 5 base pair tRNA suppressor that suppresses CCACU, which would normally cause a frame shift mutation.
false
false
_295_
0
5109
9
It's complicated
false
We used the 9 base anticodon loop that is complementary to the 5 base pair codon CCACU.
false
Shamita Punjabi
annotation2006709
1
3' Context
range2006709
1
104
143
annotation2006707
1
5' Context
range2006707
1
1
11
annotation2006708
1
Anticodon Loop
range2006708
1
44
52
BBa_S04333
1
BBa_S04333
K199106:K199002
2009-11-18T12:00:00Z
2015-05-08T01:14:38Z
false
false
_9_
0
5562
9
Not in stock
false
false
Mary Gearing
component2062779
1
BBa_K199106
component2062783
1
BBa_K199002
annotation2062779
1
BBa_K199106
range2062779
1
1
49
annotation2062783
1
BBa_K199002
range2062783
1
58
200
BBa_J100016
1
BBa_J100016
2 Clause 2-SAT Problem with Frameshifted LuxI and a GFP Reporter
2011-06-20T11:00:00Z
2015-08-31T04:08:21Z
N/A
GFP is produced only if the frameshifts in LuxI are suppressed, forming a 2 clause 2-SAT problem.
false
false
_578_
0
5111
9
Not in stock
false
N/A
false
Eric Sawyer
component2298197
1
BBa_R0010
component2298208
1
BBa_C0062
component2298180
1
BBa_R0062
component2298185
1
BBa_B0034
component2298178
1
BBa_B0015
component2298191
1
BBa_J100014
component2298218
1
BBa_B0015
component2298205
1
BBa_B0034
component2298193
1
BBa_B0030
component2298196
1
BBa_E0040
annotation2298197
1
BBa_R0010
range2298197
1
1628
1827
annotation2298205
1
BBa_B0034
range2298205
1
1836
1847
annotation2298218
1
BBa_B0015
range2298218
1
2643
2771
annotation2298180
1
BBa_R0062
range2298180
1
138
192
annotation2298196
1
BBa_E0040
range2298196
1
900
1619
annotation2298191
1
BBa_J100014
range2298191
1
219
870
annotation2298178
1
BBa_B0015
range2298178
1
1
129
annotation2298208
1
BBa_C0062
range2298208
1
1854
2609
annotation2298185
1
BBa_B0034
range2298185
1
201
212
annotation2298193
1
BBa_B0030
range2298193
1
879
893
BBa_K199028
1
BBa_K199028
CGGUC tRNA Suppressor (Produces Serine)
2009-07-08T11:00:00Z
2015-05-08T01:11:18Z
De Novo synthesis from oligos. Based on the paper by Anderson et al. (http://gcat.davidson.edu/GcatWiki/images/6/6f/AndersonSchultz2002ChemBiol.pdf)
This gene encodes for a 5 base pair tRNA suppressor that suppresses CGGUC, which would normally cause a frame shift mutation.
false
false
_295_
0
5117
9
It's complicated
false
We used the 9 base anticodon loop that is complementary to the 5 base pair codon CGGUC.
false
Alyndria Thompson
annotation2010430
1
anticodon loop
range2010430
1
44
52
annotation2010432
1
3
range2010432
1
104
143
annotation2010431
1
5' context
range2010431
1
1
11
BBa_K199001
1
BBa_K199001
CUAGU tRNA Suppressor (Produces Serine)
2009-06-25T11:00:00Z
2015-05-08T01:11:18Z
De Novo synthesis from oligos. Based on the paper by Anderson et al. (http://gcat.davidson.edu/GcatWiki/images/6/6f/AndersonSchultz2002ChemBiol.pdf)
This gene encodes for a 5 base pair tRNA suppressor that suppresses CUAGU, which would normally cause a frame shift mutation.
false
false
_295_
0
5109
9
It's complicated
false
We used the 9 base anticodon loop that is complementary to the 5 base pair codon CUAGU.
false
Romina Clemente
annotation2006704
1
5' Context
range2006704
1
1
11
annotation2006705
1
Anticodon Loop
range2006705
1
44
52
annotation2006706
1
3' Context
range2006706
1
104
143
BBa_R0010
1
LacI
promoter (lacI regulated)
2003-01-31T12:00:00Z
2015-05-08T01:14:14Z
The Plac insert was PCR'd from the MG1655 strain of E.coli K12.
Released HQ 2013
Inverting regulatory region controlled by LacI (<bb_part>BBa_C0010</bb_part>, <bb_part>BBa_C0011</bb_part>, etc.) <p> The pLac regulatory region is a 243 base-pair sequence with standard BioBrick prefix and suffix sections on its ends. It contains two protein binding sites: CAP, which is generally present in E.coli and is assocciated with cell health and availability of glucose., and LacI, the Lac inhibitor <bb_part>BBa_C0010</bb_part> which binds in an dimerized cooperative manner to inhibit the transcription of the protein that follows. In the presence of lactose or IPTG, an analog of lactose, LacI is unable to correctly bind and inhibit transcription. This allows <bb_part>BBa_R0010</bb_part> to be used as a inverter or as a detector of lactose or IPTG.
false
true
_1_
0
24
7
In stock
false
<P> <P><P> LacI binds to this regulator. This part is incompatible with species containing active LacI coding regions. Lactose and IPTG disable the operation of LacI and this regulator. This part is incompatible with environments containing lactose or lactose analogs.
true
annotation1961223
1
CAP binding site
range1961223
1
89
126
annotation1961225
1
-10
range1961225
1
161
166
annotation1961224
1
-35
range1961224
1
137
142
annotation1961227
1
start
range1961227
1
173
173
annotation1961222
1
BBa_R0010
range1961222
1
1
200
annotation1961226
1
LacI binding site
range1961226
1
166
200
annotation1961221
1
end of LacI coding region (inactive)
range1961221
1
1
88
BBa_E0040
1
GFP
green fluorescent protein derived from jellyfish Aequeora victoria wild-type GFP (SwissProt: P42212
2004-09-29T11:00:00Z
2016-01-26T02:09:38Z
Released HQ 2013
GFP (mut3b) [note that this part does not have a barcode]
false
true
_11_1_
4206
61
7
In stock
false
true
jcbraff
annotation1934520
1
GFP protein
range1934520
1
1
720
BBa_B0010
1
BBa_B0010
T1 from E. coli rrnB
2003-11-19T12:00:00Z
2015-08-31T04:07:20Z
Transcriptional terminator consisting of a 64 bp stem-loop.
false
false
_1_
0
24
7
In stock
false
true
Randy Rettberg
annotation7018
1
BBa_B0010
range7018
1
1
80
annotation4184
1
stem_loop
range4184
1
12
55
BBa_J100017
1
BBa_J100017
TT+pLux+RBS+LuxI(2-SAT 2 clause)+RBS+GFP+pLac+RBS+LuxR+tRNAs
2011-07-06T11:00:00Z
2015-08-31T04:08:21Z
N/A
TT+pLux+RBS+LuxI(2-SAT 2 clause)+RBS+GFP+pLac+RBS+LuxR+tRNAs
false
false
_578_
0
5111
9
Not in stock
false
N/A
false
Eric Sawyer
component2318383
1
BBa_J100016
component2318402
1
BBa_J100011
annotation2318383
1
BBa_J100016
range2318383
1
1
2771
annotation2318402
1
BBa_J100011
range2318402
1
2780
3395
BBa_J100014
1
BBa_J100014
LuxI with 2 Clause 2-SAT Problem
2011-06-20T11:00:00Z
2015-08-31T04:08:21Z
N/A
LuxI is frameshifted by the addition of a SAT problem between the engineered restriction sites AsiSI and AscI. The correct reading frame is restored only if suppressor tRNA CCACU (K199002) or suppressor tRNA CUAGU (K199001) AND suppressor tRNA CGGUC (K199028) or suppressor tRNA CCACU (K199002) are present in the cell.
false
false
_578_
0
5111
9
Not in stock
false
N/A
false
Eric Sawyer
annotation2122246
1
SAT Problem
range2122246
1
13
37
annotation2122244
1
Stop
range2122244
1
647
652
annotation2122243
1
Start
range2122243
1
1
3
annotation2122247
1
AscI Site
range2122247
1
42
49
annotation2122245
1
AsiSI Site
range2122245
1
4
11
BBa_B0015
1
BBa_B0015
double terminator (B0010-B0012)
2003-07-16T11:00:00Z
2015-08-31T04:07:20Z
Released HQ 2013
Double terminator consisting of BBa_B0010 and BBa_B0012
false
true
_1_
0
24
7
In stock
false
true
Reshma Shetty
component1916612
1
BBa_B0012
component1916610
1
BBa_B0010
annotation1916612
1
BBa_B0012
range1916612
1
89
129
annotation1916610
1
BBa_B0010
range1916610
1
1
80
BBa_S04333_sequence
1
atcaaaaaaatattctcaacataaaaaactttgtgtaatacttgtaacgtactagagggatccaattcggagagatgccggagcggctgaacggaccggtctagtggacaccggagtaggggcaactctaccgggggttcaaatccccctctctccgccactgcatatccttagcgaaagctaaggattttttttaagct
BBa_R0062_sequence
1
acctgtaggatcgtacaggtttacgcaagaaaatggtttgttatagtcgaataaa
BBa_S04336_sequence
1
atcaaaaaaatattctcaacataaaaaactttgtgtaatacttgtaacgtactagagggatccaattcggagagatgccggagcggctgaacggaccggtttactagacaccggagtaggggcaactctaccgggggttcaaatccccctctctccgccactgcatatccttagcgaaagctaaggattttttttaagct
BBa_R0010_sequence
1
caatacgcaaaccgcctctccccgcgcgttggccgattcattaatgcagctggcacgacaggtttcccgactggaaagcgggcagtgagcgcaacgcaattaatgtgagttagctcactcattaggcaccccaggctttacactttatgcttccggctcgtatgttgtgtggaattgtgagcggataacaatttcacaca
BBa_B0034_sequence
1
aaagaggagaaa
BBa_J100014_sequence
1
atggcgatcgcaccactgctagttctcggtcgccacttctgggcgcgccgcaattgcaagcggtcgtgcaaccattatgattaaaaaaagcgattttctggccattccgagcgaagaatataaaggtattctgagcctgcgctatcaggtttttaaacagcgtctggaatgggatctggtggttgaaaataatctggaaagtgatgaatatgataatagcaatgccgaatatatttatgcctgtgatgataccgaaaatgttagcggttgttggcgtctgctgccgaccaccggtgattatatgctgaaaagcgtttttccggaactgctgggtcagcagagcgcaccgaaagatccgaatattgttgaactgagccgttttgccgtgggtaaaaatagcagcaaaattaataatagcgccagcgaaattaccatgaaactgtttgaagccatttataaacatgccgttagccagggtattaccgaatatgttaccgttaccagcaccgcaattgaacgttttctgaaacgtattaaagtgccgtgtcatcgtattggcgataaagaaattcatgttctgggcgataccaaaagcgttgttctgagcatgccgattaatgaacagtttaaaaaagccgtgctgaactaataa
BBa_K199002_sequence
1
ggatccaattcggagagatgccggagcggctgaacggaccggtctagtggacaccggagtaggggcaactctaccgggggttcaaatccccctctctccgccactgcatatccttagcgaaagctaaggattttttttaagct
BBa_B0010_sequence
1
ccaggcatcaaataaaacgaaaggctcagtcgaaagactgggcctttcgttttatctgttgtttgtcggtgaacgctctc
BBa_K199028_sequence
1
ggatccaattcggagagatgccggagcggctgaacggaccggtttgaccgacaccggagtaggggcaactctaccgggggttcaaatccccctctctccgccactgcatatccttagcgaaagctaaggattttttttaagct
BBa_K199106_sequence
1
atcaaaaaaatattctcaacataaaaaactttgtgtaatacttgtaacg
BBa_J100017_sequence
1
ccaggcatcaaataaaacgaaaggctcagtcgaaagactgggcctttcgttttatctgttgtttgtcggtgaacgctctctactagagtcacactggctcaccttcgggtgggcctttctgcgtttatatactagagacctgtaggatcgtacaggtttacgcaagaaaatggtttgttatagtcgaataaatactagagaaagaggagaaatactagatggcgatcgcaccactgctagttctcggtcgccacttctgggcgcgccgcaattgcaagcggtcgtgcaaccattatgattaaaaaaagcgattttctggccattccgagcgaagaatataaaggtattctgagcctgcgctatcaggtttttaaacagcgtctggaatgggatctggtggttgaaaataatctggaaagtgatgaatatgataatagcaatgccgaatatatttatgcctgtgatgataccgaaaatgttagcggttgttggcgtctgctgccgaccaccggtgattatatgctgaaaagcgtttttccggaactgctgggtcagcagagcgcaccgaaagatccgaatattgttgaactgagccgttttgccgtgggtaaaaatagcagcaaaattaataatagcgccagcgaaattaccatgaaactgtttgaagccatttataaacatgccgttagccagggtattaccgaatatgttaccgttaccagcaccgcaattgaacgttttctgaaacgtattaaagtgccgtgtcatcgtattggcgataaagaaattcatgttctgggcgataccaaaagcgttgttctgagcatgccgattaatgaacagtttaaaaaagccgtgctgaactaataatactagagattaaagaggagaaatactagatgcgtaaaggagaagaacttttcactggagttgtcccaattcttgttgaattagatggtgatgttaatgggcacaaattttctgtcagtggagagggtgaaggtgatgcaacatacggaaaacttacccttaaatttatttgcactactggaaaactacctgttccatggccaacacttgtcactactttcggttatggtgttcaatgctttgcgagatacccagatcatatgaaacagcatgactttttcaagagtgccatgcccgaaggttatgtacaggaaagaactatatttttcaaagatgacgggaactacaagacacgtgctgaagtcaagtttgaaggtgatacccttgttaatagaatcgagttaaaaggtattgattttaaagaagatggaaacattcttggacacaaattggaatacaactataactcacacaatgtatacatcatggcagacaaacaaaagaatggaatcaaagttaacttcaaaattagacacaacattgaagatggaagcgttcaactagcagaccattatcaacaaaatactccaattggcgatggccctgtccttttaccagacaaccattacctgtccacacaatctgccctttcgaaagatcccaacgaaaagagagaccacatggtccttcttgagtttgtaacagctgctgggattacacatggcatggatgaactatacaaataataatactagagcaatacgcaaaccgcctctccccgcgcgttggccgattcattaatgcagctggcacgacaggtttcccgactggaaagcgggcagtgagcgcaacgcaattaatgtgagttagctcactcattaggcaccccaggctttacactttatgcttccggctcgtatgttgtgtggaattgtgagcggataacaatttcacacatactagagaaagaggagaaatactagatgaaaaacataaatgccgacgacacatacagaataattaataaaattaaagcttgtagaagcaataatgatattaatcaatgcttatctgatatgactaaaatggtacattgtgaatattatttactcgcgatcatttatcctcattctatggttaaatctgatatttcaatcctagataattaccctaaaaaatggaggcaatattatgatgacgctaatttaataaaatatgatcctatagtagattattctaactccaatcattcaccaattaattggaatatatttgaaaacaatgctgtaaataaaaaatctccaaatgtaattaaagaagcgaaaacatcaggtcttatcactgggtttagtttccctattcatacggctaacaatggcttcggaatgcttagttttgcacattcagaaaaagacaactatatagatagtttatttttacatgcgtgtatgaacataccattaattgttccttctctagttgataattatcgaaaaataaatatagcaaataataaatcaaacaacgatttaaccaaaagagaaaaagaatgtttagcgtgggcatgcgaaggaaaaagctcttgggatatttcaaaaatattaggttgcagtgagcgtactgtcactttccatttaaccaatgcgcaaatgaaactcaatacaacaaaccgctgccaaagtatttctaaagcaattttaacaggagcaattgattgcccatactttaaaaattaataacactgatagtgctagtgtagatcactactagagccaggcatcaaataaaacgaaaggctcagtcgaaagactgggcctttcgttttatctgttgtttgtcggtgaacgctctctactagagtcacactggctcaccttcgggtgggcctttctgcgtttatatactagagatcaaaaaaatattctcaacataaaaaactttgtgtaatacttgtaacgtactagagggatccaattcggagagatgccggagcggctgaacggaccggtctagtggacaccggagtaggggcaactctaccgggggttcaaatccccctctctccgccactgcatatccttagcgaaagctaaggattttttttaagcttactagagatcaaaaaaatattctcaacataaaaaactttgtgtaatacttgtaacgtactagagggatccaattcggagagatgccggagcggctgaacggaccggtttactagacaccggagtaggggcaactctaccgggggttcaaatccccctctctccgccactgcatatccttagcgaaagctaaggattttttttaagcttactagagatcaaaaaaatattctcaacataaaaaactttgtgtaatacttgtaacgtactagagggatccaattcggagagatgccggagcggctgaacggaccggtttgaccgacaccggagtaggggcaactctaccgggggttcaaatccccctctctccgccactgcatatccttagcgaaagctaaggattttttttaagct
BBa_S04334_sequence
1
atcaaaaaaatattctcaacataaaaaactttgtgtaatacttgtaacgtactagagggatccaattcggagagatgccggagcggctgaacggaccggtttgaccgacaccggagtaggggcaactctaccgggggttcaaatccccctctctccgccactgcatatccttagcgaaagctaaggattttttttaagct
BBa_K199001_sequence
1
ggatccaattcggagagatgccggagcggctgaacggaccggtttactagacaccggagtaggggcaactctaccgggggttcaaatccccctctctccgccactgcatatccttagcgaaagctaaggattttttttaagct
BBa_B0030_sequence
1
attaaagaggagaaa
BBa_E0040_sequence
1
atgcgtaaaggagaagaacttttcactggagttgtcccaattcttgttgaattagatggtgatgttaatgggcacaaattttctgtcagtggagagggtgaaggtgatgcaacatacggaaaacttacccttaaatttatttgcactactggaaaactacctgttccatggccaacacttgtcactactttcggttatggtgttcaatgctttgcgagatacccagatcatatgaaacagcatgactttttcaagagtgccatgcccgaaggttatgtacaggaaagaactatatttttcaaagatgacgggaactacaagacacgtgctgaagtcaagtttgaaggtgatacccttgttaatagaatcgagttaaaaggtattgattttaaagaagatggaaacattcttggacacaaattggaatacaactataactcacacaatgtatacatcatggcagacaaacaaaagaatggaatcaaagttaacttcaaaattagacacaacattgaagatggaagcgttcaactagcagaccattatcaacaaaatactccaattggcgatggccctgtccttttaccagacaaccattacctgtccacacaatctgccctttcgaaagatcccaacgaaaagagagaccacatggtccttcttgagtttgtaacagctgctgggattacacatggcatggatgaactatacaaataataa
BBa_J100011_sequence
1
atcaaaaaaatattctcaacataaaaaactttgtgtaatacttgtaacgtactagagggatccaattcggagagatgccggagcggctgaacggaccggtctagtggacaccggagtaggggcaactctaccgggggttcaaatccccctctctccgccactgcatatccttagcgaaagctaaggattttttttaagcttactagagatcaaaaaaatattctcaacataaaaaactttgtgtaatacttgtaacgtactagagggatccaattcggagagatgccggagcggctgaacggaccggtttactagacaccggagtaggggcaactctaccgggggttcaaatccccctctctccgccactgcatatccttagcgaaagctaaggattttttttaagcttactagagatcaaaaaaatattctcaacataaaaaactttgtgtaatacttgtaacgtactagagggatccaattcggagagatgccggagcggctgaacggaccggtttgaccgacaccggagtaggggcaactctaccgggggttcaaatccccctctctccgccactgcatatccttagcgaaagctaaggattttttttaagct
BBa_B0012_sequence
1
tcacactggctcaccttcgggtgggcctttctgcgtttata
BBa_C0062_sequence
1
atgaaaaacataaatgccgacgacacatacagaataattaataaaattaaagcttgtagaagcaataatgatattaatcaatgcttatctgatatgactaaaatggtacattgtgaatattatttactcgcgatcatttatcctcattctatggttaaatctgatatttcaatcctagataattaccctaaaaaatggaggcaatattatgatgacgctaatttaataaaatatgatcctatagtagattattctaactccaatcattcaccaattaattggaatatatttgaaaacaatgctgtaaataaaaaatctccaaatgtaattaaagaagcgaaaacatcaggtcttatcactgggtttagtttccctattcatacggctaacaatggcttcggaatgcttagttttgcacattcagaaaaagacaactatatagatagtttatttttacatgcgtgtatgaacataccattaattgttccttctctagttgataattatcgaaaaataaatatagcaaataataaatcaaacaacgatttaaccaaaagagaaaaagaatgtttagcgtgggcatgcgaaggaaaaagctcttgggatatttcaaaaatattaggttgcagtgagcgtactgtcactttccatttaaccaatgcgcaaatgaaactcaatacaacaaaccgctgccaaagtatttctaaagcaattttaacaggagcaattgattgcccatactttaaaaattaataacactgatagtgctagtgtagatcac
BBa_J100016_sequence
1
ccaggcatcaaataaaacgaaaggctcagtcgaaagactgggcctttcgttttatctgttgtttgtcggtgaacgctctctactagagtcacactggctcaccttcgggtgggcctttctgcgtttatatactagagacctgtaggatcgtacaggtttacgcaagaaaatggtttgttatagtcgaataaatactagagaaagaggagaaatactagatggcgatcgcaccactgctagttctcggtcgccacttctgggcgcgccgcaattgcaagcggtcgtgcaaccattatgattaaaaaaagcgattttctggccattccgagcgaagaatataaaggtattctgagcctgcgctatcaggtttttaaacagcgtctggaatgggatctggtggttgaaaataatctggaaagtgatgaatatgataatagcaatgccgaatatatttatgcctgtgatgataccgaaaatgttagcggttgttggcgtctgctgccgaccaccggtgattatatgctgaaaagcgtttttccggaactgctgggtcagcagagcgcaccgaaagatccgaatattgttgaactgagccgttttgccgtgggtaaaaatagcagcaaaattaataatagcgccagcgaaattaccatgaaactgtttgaagccatttataaacatgccgttagccagggtattaccgaatatgttaccgttaccagcaccgcaattgaacgttttctgaaacgtattaaagtgccgtgtcatcgtattggcgataaagaaattcatgttctgggcgataccaaaagcgttgttctgagcatgccgattaatgaacagtttaaaaaagccgtgctgaactaataatactagagattaaagaggagaaatactagatgcgtaaaggagaagaacttttcactggagttgtcccaattcttgttgaattagatggtgatgttaatgggcacaaattttctgtcagtggagagggtgaaggtgatgcaacatacggaaaacttacccttaaatttatttgcactactggaaaactacctgttccatggccaacacttgtcactactttcggttatggtgttcaatgctttgcgagatacccagatcatatgaaacagcatgactttttcaagagtgccatgcccgaaggttatgtacaggaaagaactatatttttcaaagatgacgggaactacaagacacgtgctgaagtcaagtttgaaggtgatacccttgttaatagaatcgagttaaaaggtattgattttaaagaagatggaaacattcttggacacaaattggaatacaactataactcacacaatgtatacatcatggcagacaaacaaaagaatggaatcaaagttaacttcaaaattagacacaacattgaagatggaagcgttcaactagcagaccattatcaacaaaatactccaattggcgatggccctgtccttttaccagacaaccattacctgtccacacaatctgccctttcgaaagatcccaacgaaaagagagaccacatggtccttcttgagtttgtaacagctgctgggattacacatggcatggatgaactatacaaataataatactagagcaatacgcaaaccgcctctccccgcgcgttggccgattcattaatgcagctggcacgacaggtttcccgactggaaagcgggcagtgagcgcaacgcaattaatgtgagttagctcactcattaggcaccccaggctttacactttatgcttccggctcgtatgttgtgtggaattgtgagcggataacaatttcacacatactagagaaagaggagaaatactagatgaaaaacataaatgccgacgacacatacagaataattaataaaattaaagcttgtagaagcaataatgatattaatcaatgcttatctgatatgactaaaatggtacattgtgaatattatttactcgcgatcatttatcctcattctatggttaaatctgatatttcaatcctagataattaccctaaaaaatggaggcaatattatgatgacgctaatttaataaaatatgatcctatagtagattattctaactccaatcattcaccaattaattggaatatatttgaaaacaatgctgtaaataaaaaatctccaaatgtaattaaagaagcgaaaacatcaggtcttatcactgggtttagtttccctattcatacggctaacaatggcttcggaatgcttagttttgcacattcagaaaaagacaactatatagatagtttatttttacatgcgtgtatgaacataccattaattgttccttctctagttgataattatcgaaaaataaatatagcaaataataaatcaaacaacgatttaaccaaaagagaaaaagaatgtttagcgtgggcatgcgaaggaaaaagctcttgggatatttcaaaaatattaggttgcagtgagcgtactgtcactttccatttaaccaatgcgcaaatgaaactcaatacaacaaaccgctgccaaagtatttctaaagcaattttaacaggagcaattgattgcccatactttaaaaattaataacactgatagtgctagtgtagatcactactagagccaggcatcaaataaaacgaaaggctcagtcgaaagactgggcctttcgttttatctgttgtttgtcggtgaacgctctctactagagtcacactggctcaccttcgggtgggcctttctgcgtttata
BBa_B0015_sequence
1
ccaggcatcaaataaaacgaaaggctcagtcgaaagactgggcctttcgttttatctgttgtttgtcggtgaacgctctctactagagtcacactggctcaccttcgggtgggcctttctgcgtttata
igem2sbol
1
iGEM to SBOL conversion
Conversion of the iGEM parts registry to SBOL2.1
Chris J. Myers
James Alastair McLaughlin
2017-03-06T15:00:00.000Z