Frequency domain analysis of small non-coding RNAs shows summing junction-like behaviour
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Antonis Papachristodoulou | Edward J. Hancock | Andreas W. K. Harris | Ciaran L. Kelly | Harrison Steel | A. Papachristodoulou | E. J. Hancock | Harrison Steel
[1] G. Yagil,et al. On the relation between effector concentration and the rate of induced enzyme synthesis. , 1971, Biophysical journal.
[2] Domitilla Del Vecchio,et al. Modularity, context-dependence, and insulation in engineered biological circuits , 2015 .
[3] Ahmad S. Khalil,et al. Synthetic biology: applications come of age , 2010, Nature Reviews Genetics.
[4] Victoria Hsiao,et al. Design and implementation of a synthetic biomolecular concentration tracker , 2013, bioRxiv.
[5] Richard M. Murray,et al. Negative autoregulation matches production and demand in synthetic transcriptional networks , 2013 .
[6] W. Klonowski. Simplifying principles for chemical and enzyme reaction kinetics. , 1983, Biophysical chemistry.
[7] W. Lim,et al. Defining Network Topologies that Can Achieve Biochemical Adaptation , 2009, Cell.
[8] S. Gottesman,et al. Coupled degradation of a small regulatory RNA and its mRNA targets in Escherichia coli. , 2003, Genes & development.
[9] Han N. Lim,et al. Direct comparison of small RNA and transcription factor signaling , 2012, Nucleic acids research.
[10] J. Park,et al. Metabolic engineering of Escherichia coli using synthetic small regulatory RNAs , 2013, Nature Biotechnology.
[11] S. Gottesman. The small RNA regulators of Escherichia coli: roles and mechanisms*. , 2004, Annual review of microbiology.
[12] Jordan Ang,et al. Physical constraints on biological integral control design for homeostasis and sensory adaptation. , 2013, Biophysical journal.
[13] G. Storz,et al. Regulation by small RNAs in bacteria: expanding frontiers. , 2011, Molecular cell.
[14] Deepak Mishra,et al. A load driver device for engineering modularity in biological networks , 2014, Nature Biotechnology.
[15] Francesca Ceroni,et al. A synthetic post-transcriptional controller to explore the modular design of gene circuits. , 2012, ACS synthetic biology.
[16] Ankit Gupta,et al. Antithetic Integral Feedback Ensures Robust Perfect Adaptation in Noisy Biomolecular Networks. , 2014, Cell systems.
[17] Aixia Zhang,et al. Hfq: the flexible RNA matchmaker. , 2016, Current opinion in microbiology.
[18] M. Elowitz,et al. A synthetic oscillatory network of transcriptional regulators , 2000, Nature.
[19] Nicolas E. Buchler,et al. Molecular titration and ultrasensitivity in regulatory networks. , 2008, Journal of molecular biology.
[20] Mario di Bernardo,et al. In-Silico Analysis and Implementation of a Multicellular Feedback Control Strategy in a Synthetic Bacterial Consortium. , 2017, ACS synthetic biology.
[21] J. Collins,et al. Toehold Switches: De-Novo-Designed Regulators of Gene Expression , 2014, Cell.
[22] U. Alon,et al. Negative autoregulation speeds the response times of transcription networks. , 2002, Journal of molecular biology.
[23] M. Khammash. An engineering viewpoint on biological robustness , 2016, BMC Biology.
[24] W. Hess,et al. cis-Antisense RNA, Another Level of Gene Regulation in Bacteria , 2011, Microbiology and Molecular Reviews.
[25] Rahul Sarpeshkar,et al. Synthetic analog computation in living cells , 2013, Nature.
[26] Feng Han,et al. Artificial trans-encoded small non-coding RNAs specifically silence the selected gene expression in bacteria , 2011, Nucleic acids research.
[27] Antonis Papachristodoulou,et al. Designing Genetic Feedback Controllers , 2015, IEEE Transactions on Biomedical Circuits and Systems.
[28] Hernan G. Garcia. Transcriptional Regulation by the Numbers , 2005 .
[29] K Oishi,et al. Biomolecular implementation of linear I/O systems. , 2011, IET systems biology.
[30] D. Pincus,et al. In silico feedback for in vivo regulation of a gene expression circuit , 2011, Nature Biotechnology.
[31] M. Elowitz,et al. Synthetic Biology: Integrated Gene Circuits , 2011, Science.
[32] Jongrae Kim,et al. Design of an embedded inverse-feedforward biomolecular tracking controller for enzymatic reaction processes , 2017, Comput. Chem. Eng..
[33] Mary Beth Kery,et al. TargetRNA2: identifying targets of small regulatory RNAs in bacteria , 2014, Nucleic Acids Res..