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1 Aerobic fitness modulates arithmetic strategy use in college-aged young adults McGowan AL; Ellison OK; Ham MS; Chandler MC; Pontifex MB; 40889823
HKAP
2 Exploring the Qualitative Experiences of Administering and Participating in Remote Research via Telephone Using the Montreal Cognitive Assessment-Blind: Cross-Sectional Study of Older Adults Dumassais S; Grewal KS; Aubin G; O' Connell M; Phillips NA; Wittich W; 39546346
PSYCHOLOGY
3 EEG-based study of design creativity: a review on research design, experiments, and analysis Zangeneh Soroush M; Zeng Y; 39148896
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4 Understanding Adolescents' Experiences With Menstrual Pain to Inform the User-Centered Design of a Mindfulness-Based App: Mixed Methods Investigation Study Gagnon MM; Brilz AR; Alberts NM; Gordon JL; Risling TL; Stinson JN; 38587886
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5 Transcoding of French numbers for first- and second-language learners in third grade Lafay A; Adrien E; Lonardo Burr SD; Douglas H; Provost-Larocque K; Xu C; LeFevre JA; Maloney EA; Osana HP; Skwarchuk SL; Wylie J; 37129448
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6 Lactate's behavioral switch in the brain: An in-silico model Soltanzadeh M; Blanchard S; Soucy JP; Benali H; 37865309
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7 Editorial: Computational systems immunovirology Zarei Ghobadi M; Teymoori-Rad M; Selvaraj G; Wei DQ; 37475870
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8 Does Conceptual Transparency in Manipulatives Afford Place-Value Understanding in Children at Risk for Mathematics Learning Disabilities? Lafay A; Osana HP; Levin JR; 37168325
CONCORDIA
9 On Left Ventricle Stroke Work Efficiency in Children with Moderate Aortic Valve Regurgitation or Moderate Aortic Valve Stenosis Asaadi M; Mawad W; Djebbari A; Keshavardz-Motamed Z; Dahdah N; Kadem L; 34357415
ENCS
10 Category-specific verb-semantic deficits in Alzheimer's disease: Evidence from static and dynamic action naming. de Almeida RG, Mobayyen F, Antal C, Kehayia E, Nair VP, Schwartz G 33455543
PSYCHOLOGY
11 Using Models to (Re-)Design Synthetic Circuits. McCallum G, Potvin-Trottier L 33405217
BIOLOGY
12 An efficient method for indexing grazing-incidence X-ray diffraction data of epitaxially grown thin films Simbrunner J; Schrode B; Domke J; Fritz T; Salzmann I; Resel R; 32356785
CERMM

 

Title:Using Models to (Re-)Design Synthetic Circuits.
Authors:McCallum GPotvin-Trottier L
Link:https://www.ncbi.nlm.nih.gov/pubmed/33405217
DOI:10.1007/978-1-0716-1032-9_3
Publication:Methods in molecular biology (Clifton, N.J.)
Keywords:Biological oscillationsDynamical gene networkGillespie algorithmMathematical modelingStochastic simulationsSynthetic biologySynthetic gene circuitsSynthetic oscillator
PMID:33405217 Category:Methods Mol Biol Date Added:2021-01-07
Dept Affiliation: BIOLOGY
1 Department of Biology, Concordia University, Montreal, QC, Canada.
2 Department of Biology, Concordia University, Montreal, QC, Canada. laurent.potvin@concordia.ca.
3 Center for Applied Synthetic Biology, Concordia University, Montreal, QC, Canada. laurent.potvin@concordia.ca.
4 Department of Physics, Concordia University, Montreal, QC, Canada. laurent.potvin@concordia.ca.

Description:

Using Models to (Re-)Design Synthetic Circuits.

Methods Mol Biol. 2021; 2229:91-118

Authors: McCallum G, Potvin-Trottier L

Abstract

Mathematical models play an important role in the design of synthetic gene circuits, by guiding the choice of biological components and their assembly into novel gene networks. Here, we present a guide for biologists to build and utilize models of gene networks (synthetic or natural) to analyze dynamical properties of these networks while considering the low numbers of molecules inside cells that results in stochastic gene expression. We start by describing how to write down a model and discussing the level of details to include. We then briefly demonstrate how to simulate a network's dynamics using deterministic differential equations that assume high numbers of molecules. To consider the role of stochastic gene expression in single cells, we provide a detailed tutorial on running stochastic Gillespie simulations of a network, including instructions on coding the Gillespie algorithm with example code. Finally, we illustrate how using a combination of quantitative experimental characterization of a synthetic circuit and mathematical modeling can guide the iterative redesign of a synthetic circuit to achieve the desired properties. This is shown using a classic synthetic oscillator, the repressilator, which we recently redesigned into the most precise and robust synthetic oscillator to date. We thus provide a toolkit for synthetic biologists to build more precise and robust synthetic circuits, which should lead to a deeper understanding of the dynamics of gene regulatory networks.

PMID: 33405217 [PubMed - in process]





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