BBa_K235013
1
BBa_K235013
[K145303][K235000] (ribokey-mediated pLac-controlled GFP reporter)
2009-09-02T11:00:00Z
2015-05-08T01:11:35Z
K145303+K235000
This composite part will constitutively produce ribolocked GFP mRNA, and will produce the ribokey needed for transcription only when induced by lactose or an analogue like IPTG. This ought to reduce signal noise due to transient pLac activity.
false
false
_336_
0
5167
9
Not in stock
false
Constructed using three-antibiotic assembly.
false
Kyliah Clarkson
component2018412
1
BBa_J23009
component2018404
1
BBa_R0010
component2018395
1
BBa_J23032
component2018413
1
BBa_B0010
component2018397
1
BBa_E0040
component2018415
1
BBa_B0012
component2018411
1
BBa_J23008
component2018400
1
BBa_B0012
component2018394
1
BBa_J23109
component2018398
1
BBa_B0010
annotation2018413
1
BBa_B0010
range2018413
1
1373
1452
annotation2018398
1
BBa_B0010
range2018398
1
821
900
annotation2018400
1
BBa_B0012
range2018400
1
909
949
annotation2018412
1
BBa_J23009
range2018412
1
1268
1364
annotation2018397
1
BBa_E0040
range2018397
1
93
812
annotation2018394
1
BBa_J23109
range2018394
1
1
35
annotation2018404
1
BBa_R0010
range2018404
1
958
1157
annotation2018415
1
BBa_B0012
range2018415
1
1461
1501
annotation2018411
1
BBa_J23008
range2018411
1
1166
1259
annotation2018395
1
BBa_J23032
range2018395
1
44
86
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
annotation1961227
1
start
range1961227
1
173
173
annotation1961221
1
end of LacI coding region (inactive)
range1961221
1
1
88
annotation1961223
1
CAP binding site
range1961223
1
89
126
annotation1961222
1
BBa_R0010
range1961222
1
1
200
annotation1961225
1
-10
range1961225
1
161
166
annotation1961226
1
LacI binding site
range1961226
1
166
200
annotation1961224
1
-35
range1961224
1
137
142
BBa_J23109
1
BBa_J23109
constitutive promoter family member
2006-08-16T11:00:00Z
2015-08-31T04:08:40Z
Later
Later
false
true
_52_
0
483
95
In stock
true
N/A
true
John Anderson
BBa_J23008
1
BBa_J23008
[key3c] riboregulator for lock3 variants
2006-07-09T11:00:00Z
2015-08-31T04:08:38Z
J23007
This part has the same homology region to J01122 as J23007 except that unlike J23007, J23008 does not contain the hairpin that was derived from J01129. J23008 anneals linearly to the stem of the hairpin in J01122 with perfect base pairing and destroys the hairpin in the process and reveals the RBS on J01122. When J01122 is transcribed the RNA secondary structure is such that the RBS hairpins with sequence upstream preventing the ribosome from binding and translation from occuring thereby locking up RFP further down stream. When J23008 is introduced into the cell in trans, we suspect that it will unlock the RBS for RFP as described above allowing translation to occur.
false
false
_52_
0
931
52
In stock
false
No design considerations
true
Kaitlin Davis
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
annotation7020
1
BBa_B0012
range7020
1
1
41
annotation1687
1
stop
range1687
1
34
34
annotation1690
1
polya
range1690
1
28
41
annotation1686
1
T7 TE
range1686
1
8
27
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_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_J23009
1
BBa_J23009
[key3d] riboregulator for lock3 variants
2006-08-02T11:00:00Z
2015-08-31T04:08:38Z
Overlap extension
Variant of key3 (see part J01129 (key3), J23007(key3b), J23008(key3c)). Part is in pJ23006, so there is a Ptet upstream of the XbaI site to drive expression. Nevertheless, J23009 is still a basic part allowing both prefix and suffix insertions.
false
false
_52_
0
483
95
In stock
false
N/A
true
John Anderson
BBa_J23032
1
BBa_J23032
[lock3d]
2006-08-02T11:00:00Z
2015-08-31T04:08:39Z
Extension of overlapping oligonucleotides
lock3d
false
false
_52_
0
483
95
In stock
false
N/A
true
John Anderson
BBa_B0010_sequence
1
ccaggcatcaaataaaacgaaaggctcagtcgaaagactgggcctttcgttttatctgttgtttgtcggtgaacgctctc
BBa_J23109_sequence
1
tttacagctagctcagtcctagggactgtgctagc
BBa_R0010_sequence
1
caatacgcaaaccgcctctccccgcgcgttggccgattcattaatgcagctggcacgacaggtttcccgactggaaagcgggcagtgagcgcaacgcaattaatgtgagttagctcactcattaggcaccccaggctttacactttatgcttccggctcgtatgttgtgtggaattgtgagcggataacaatttcacaca
BBa_K235013_sequence
1
tttacagctagctcagtcctagggactgtgctagctactagagaactagaatcacctcttgcttttgggtaagacagaagaggagatactagatgcgtaaaggagaagaacttttcactggagttgtcccaattcttgttgaattagatggtgatgttaatgggcacaaattttctgtcagtggagagggtgaaggtgatgcaacatacggaaaacttacccttaaatttatttgcactactggaaaactacctgttccatggccaacacttgtcactactttcggttatggtgttcaatgctttgcgagatacccagatcatatgaaacagcatgactttttcaagagtgccatgcccgaaggttatgtacaggaaagaactatatttttcaaagatgacgggaactacaagacacgtgctgaagtcaagtttgaaggtgatacccttgttaatagaatcgagttaaaaggtattgattttaaagaagatggaaacattcttggacacaaattggaatacaactataactcacacaatgtatacatcatggcagacaaacaaaagaatggaatcaaagttaacttcaaaattagacacaacattgaagatggaagcgttcaactagcagaccattatcaacaaaatactccaattggcgatggccctgtccttttaccagacaaccattacctgtccacacaatctgccctttcgaaagatcccaacgaaaagagagaccacatggtccttcttgagtttgtaacagctgctgggattacacatggcatggatgaactatacaaataataatactagagccaggcatcaaataaaacgaaaggctcagtcgaaagactgggcctttcgttttatctgttgtttgtcggtgaacgctctctactagagtcacactggctcaccttcgggtgggcctttctgcgtttatatactagagcaatacgcaaaccgcctctccccgcgcgttggccgattcattaatgcagctggcacgacaggtttcccgactggaaagcgggcagtgagcgcaacgcaattaatgtgagttagctcactcattaggcaccccaggctttacactttatgcttccggctcgtatgttgtgtggaattgtgagcggataacaatttcacacatactagagacccaaaagcaagaggtgattctagttggtggttaatgaaaattaacttacttactagaaatatctctaaaaagccagattattaatccggctttactagagcgggcgggcgggcgggcgggatccataaaaaaaaaacccaaaagcaagaggtgattctagttaaaaaaaaaaagcttcccgcccgcccgcccgcccgtactagagccaggcatcaaataaaacgaaaggctcagtcgaaagactgggcctttcgttttatctgttgtttgtcggtgaacgctctctactagagtcacactggctcaccttcgggtgggcctttctgcgtttata
BBa_J23008_sequence
1
acccaaaagcaagaggtgattctagttggtggttaatgaaaattaacttacttactagaaatatctctaaaaagccagattattaatccggctt
BBa_J23032_sequence
1
aactagaatcacctcttgcttttgggtaagacagaagaggaga
BBa_J23009_sequence
1
cgggcgggcgggcgggcgggatccataaaaaaaaaacccaaaagcaagaggtgattctagttaaaaaaaaaaagcttcccgcccgcccgcccgcccg
BBa_E0040_sequence
1
atgcgtaaaggagaagaacttttcactggagttgtcccaattcttgttgaattagatggtgatgttaatgggcacaaattttctgtcagtggagagggtgaaggtgatgcaacatacggaaaacttacccttaaatttatttgcactactggaaaactacctgttccatggccaacacttgtcactactttcggttatggtgttcaatgctttgcgagatacccagatcatatgaaacagcatgactttttcaagagtgccatgcccgaaggttatgtacaggaaagaactatatttttcaaagatgacgggaactacaagacacgtgctgaagtcaagtttgaaggtgatacccttgttaatagaatcgagttaaaaggtattgattttaaagaagatggaaacattcttggacacaaattggaatacaactataactcacacaatgtatacatcatggcagacaaacaaaagaatggaatcaaagttaacttcaaaattagacacaacattgaagatggaagcgttcaactagcagaccattatcaacaaaatactccaattggcgatggccctgtccttttaccagacaaccattacctgtccacacaatctgccctttcgaaagatcccaacgaaaagagagaccacatggtccttcttgagtttgtaacagctgctgggattacacatggcatggatgaactatacaaataataa
BBa_B0012_sequence
1
tcacactggctcaccttcgggtgggcctttctgcgtttata
igem2sbol
1
iGEM to SBOL conversion
Conversion of the iGEM parts registry to SBOL2.1
James Alastair McLaughlin
Chris J. Myers
2017-03-06T15:00:00.000Z