Literature DB >> 23411668

A synthetic biology approach to understanding cellular information processing.

Katherine A Riccione1, Robert P Smith, Anna J Lee, Lingchong You.   

Abstract

The survival of cells and organisms requires proper responses to environmental signals. These responses are governed by cellular networks, which serve to process diverse environmental cues. Biological networks often contain recurring network topologies called "motifs". It has been recognized that the study of such motifs allows one to predict the response of a biological network and thus cellular behavior. However, studying a single motif in complete isolation of all other network motifs in a natural setting is difficult. Synthetic biology has emerged as a powerful approach to understanding the dynamic properties of network motifs. In addition to testing existing theoretical predictions, construction and analysis of synthetic gene circuits has led to the discovery of novel motif dynamics, such as how the combination of simple motifs can lead to autonomous dynamics or how noise in transcription and translation can affect the dynamics of a motif. Here, we review developments in synthetic biology as they pertain to increasing our understanding of cellular information processing. We highlight several types of dynamic behaviors that diverse motifs can generate, including the control of input/output responses, the generation of autonomous spatial and temporal dynamics, as well as the influence of noise in motif dynamics and cellular behavior.

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Year:  2012        PMID: 23411668      PMCID: PMC3568971          DOI: 10.1021/sb300044r

Source DB:  PubMed          Journal:  ACS Synth Biol        ISSN: 2161-5063            Impact factor:   5.110


  116 in total

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Journal:  Science       Date:  2004-10-22       Impact factor: 47.728

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Journal:  Proc Natl Acad Sci U S A       Date:  1996-09-17       Impact factor: 11.205

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Journal:  Cell       Date:  1995-01-27       Impact factor: 41.582

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  9 in total

1.  Dynamic control and quantification of bacterial population dynamics in droplets.

Authors:  Shuqiang Huang; Jaydeep K Srimani; Anna J Lee; Ying Zhang; Allison J Lopatkin; Kam W Leong; Lingchong You
Journal:  Biomaterials       Date:  2015-05-19       Impact factor: 12.479

2.  Designed cell consortia as fragrance-programmable analog-to-digital converters.

Authors:  Marius Müller; Simon Ausländer; Andrea Spinnler; David Ausländer; Julian Sikorski; Marc Folcher; Martin Fussenegger
Journal:  Nat Chem Biol       Date:  2017-01-16       Impact factor: 15.040

Review 3.  Synthetic biology in mammalian cells: next generation research tools and therapeutics.

Authors:  Florian Lienert; Jason J Lohmueller; Abhishek Garg; Pamela A Silver
Journal:  Nat Rev Mol Cell Biol       Date:  2014-01-17       Impact factor: 94.444

4.  Multi-Faceted Characterization of a Novel LuxR-Repressible Promoter Library for Escherichia coli.

Authors:  Susanna Zucca; Lorenzo Pasotti; Nicolò Politi; Michela Casanova; Giuliano Mazzini; Maria Gabriella Cusella De Angelis; Paolo Magni
Journal:  PLoS One       Date:  2015-05-26       Impact factor: 3.240

Review 5.  The biological microprocessor, or how to build a computer with biological parts.

Authors:  Gerd Hg Moe-Behrens
Journal:  Comput Struct Biotechnol J       Date:  2013-06-26       Impact factor: 7.271

6.  Coupling spatial segregation with synthetic circuits to control bacterial survival.

Authors:  Shuqiang Huang; Anna Jisu Lee; Ryan Tsoi; Feilun Wu; Ying Zhang; Kam W Leong; Lingchong You
Journal:  Mol Syst Biol       Date:  2016-02-29       Impact factor: 11.429

7.  Engineering robust and tunable spatial structures with synthetic gene circuits.

Authors:  Wentao Kong; Andrew E Blanchard; Chen Liao; Ting Lu
Journal:  Nucleic Acids Res       Date:  2016-11-28       Impact factor: 16.971

Review 8.  Getting to the edge: protein dynamical networks as a new frontier in plant-microbe interactions.

Authors:  Cassandra C Garbutt; Purushotham V Bangalore; Pegah Kannar; M S Mukhtar
Journal:  Front Plant Sci       Date:  2014-06-30       Impact factor: 5.753

9.  Building Graphs To Describe Dynamics, Kinetics, and Energetics in the d-ALa:d-Lac Ligase VanA.

Authors:  Nathalie Duclert-Savatier; Guillaume Bouvier; Michael Nilges; Thérèse E Malliavin
Journal:  J Chem Inf Model       Date:  2016-09-12       Impact factor: 4.956

  9 in total

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