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Items: 1 to 20 of 226

1.

Multiplexing and demultiplexing logic functions for computing signal processing tasks in synthetic biology.

Pasotti L, Quattrocelli M, Galli D, De Angelis MG, Magni P.

Biotechnol J. 2011 Jul;6(7):784-95. doi: 10.1002/biot.201100080.

PMID:
21681964
2.

Synthesizing a novel genetic sequential logic circuit: a push-on push-off switch.

Lou C, Liu X, Ni M, Huang Y, Huang Q, Huang L, Jiang L, Lu D, Wang M, Liu C, Chen D, Chen C, Chen X, Yang L, Ma H, Chen J, Ouyang Q.

Mol Syst Biol. 2010;6:350. doi: 10.1038/msb.2010.2.

3.

Engineering the logical properties of a genetic AND gate.

Sayut DJ, Niu Y, Sun L.

Methods Mol Biol. 2011;743:175-84. doi: 10.1007/978-1-61779-132-1_14.

PMID:
21553191
4.

Synthetic analog computation in living cells.

Daniel R, Rubens JR, Sarpeshkar R, Lu TK.

Nature. 2013 May 30;497(7451):619-23. doi: 10.1038/nature12148.

PMID:
23676681
5.

Develop reusable and combinable designs for transcriptional logic gates.

Zhan J, Ding B, Ma R, Ma X, Su X, Zhao Y, Liu Z, Wu J, Liu H.

Mol Syst Biol. 2010 Jul 13;6:388. doi: 10.1038/msb.2010.42.

6.

Escherichia coli autoinducer-2 uptake network does not display hysteretic behavior but AI-2 synthesis rate controls transient bifurcation.

Gonzalez Barrios AF, Achenie LE.

Biosystems. 2010 Jan;99(1):17-26. doi: 10.1016/j.biosystems.2009.08.003.

PMID:
19695305
7.

Robust design of biological circuits: evolutionary systems biology approach.

Chen BS, Hsu CY, Liou JJ.

J Biomed Biotechnol. 2011;2011:304236. doi: 10.1155/2011/304236.

8.

Synthetic circuits integrating logic and memory in living cells.

Siuti P, Yazbek J, Lu TK.

Nat Biotechnol. 2013 May;31(5):448-52. doi: 10.1038/nbt.2510.

PMID:
23396014
9.

Implementing an OR-NOT (ORN) logic gate with components of the SOS regulatory network of Escherichia coli.

Silva-Rocha R, de Lorenzo V.

Mol Biosyst. 2011 Aug;7(8):2389-96. doi: 10.1039/c1mb05094j.

PMID:
21584342
10.

A Novel Synthesizing Genetic Logic Circuit: Frequency Multiplier.

Chuang CH, Lin CL.

IEEE/ACM Trans Comput Biol Bioinform. 2014 Jul-Aug;11(4):702-13. doi: 10.1109/TCBB.2014.2316814.

PMID:
26356341
11.

LsrR-binding site recognition and regulatory characteristics in Escherichia coli AI-2 quorum sensing.

Xue T, Zhao L, Sun H, Zhou X, Sun B.

Cell Res. 2009 Nov;19(11):1258-68. doi: 10.1038/cr.2009.91.

PMID:
19636340
12.

A synthetic post-transcriptional controller to explore the modular design of gene circuits.

Ceroni F, Furini S, Stefan A, Hochkoeppler A, Giordano E.

ACS Synth Biol. 2012 May 18;1(5):163-71. doi: 10.1021/sb200021s.

PMID:
23651154
13.
14.

Predicting synthetic gene networks.

di Bernardo D, Marucci L, Menolascina F, Siciliano V.

Methods Mol Biol. 2012;813:57-81. doi: 10.1007/978-1-61779-412-4_4.

PMID:
22083736
15.

Quorum sensing in Gram-negative bacteria: small-molecule modulation of AHL and AI-2 quorum sensing pathways.

Galloway WR, Hodgkinson JT, Bowden SD, Welch M, Spring DR.

Chem Rev. 2011 Jan 12;111(1):28-67. doi: 10.1021/cr100109t. Review. No abstract available.

PMID:
21182299
16.

A reconfigurable NAND/NOR genetic logic gate.

Goñi-Moreno A, Amos M.

BMC Syst Biol. 2012 Sep 18;6:126. doi: 10.1186/1752-0509-6-126.

17.

Robust model matching design methodology for a stochastic synthetic gene network.

Chen BS, Chang CH, Wang YC, Wu CH, Lee HC.

Math Biosci. 2011 Mar;230(1):23-36. doi: 10.1016/j.mbs.2010.12.007.

PMID:
21215760
18.

Quieting cross talk--the quorum sensing regulator LsrR as a possible target for fighting bacterial infections.

Byrd CM, Bentley WE.

Cell Res. 2009 Nov;19(11):1229-30. doi: 10.1038/cr.2009.122. No abstract available.

PMID:
19881524
19.

Cross species quorum quenching using a native AI-2 processing enzyme.

Roy V, Fernandes R, Tsao CY, Bentley WE.

ACS Chem Biol. 2010 Feb 19;5(2):223-32. doi: 10.1021/cb9002738.

PMID:
20025244
20.

A computational model of gene expression in an inducible synthetic circuit.

Ceroni F, Furini S, Cavalcanti S.

Pac Symp Biocomput. 2010:409-20.

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