activity
20172020
most citedFirst-principles prediction of the information processing capacity of a simple genetic circuit

13 citations · 13 across the 2 of their papers we have counts for

collaborators

5 papers

q-bio.SC2020

Reconciling Kinetic and Equilibrium Models of Bacterial Transcription

Muir J. Morrison, Manuel Razo-Mejia, Rob Phillips

The study of transcription remains one of the centerpieces of modern biology with implications in settings from development to metabolism to evolution to disease. Precision measure…

q-bio.MN2020★ 13 cited

First-principles prediction of the information processing capacity of a simple genetic circuit

Manuel Razo-Mejia, Sarah Marzen, Griffin Chure +3

Given the stochastic nature of gene expression, genetically identical cells exposed to the same environmental inputs will produce different outputs. This heterogeneity has been hyp…

q-bio.GN2019

The Energetics of Molecular Adaptation in Transcriptional Regulation

Griffin Chure, Manuel Razo-Mejia, Nathan M. Belliveau +5

Mutation is a critical mechanism by which evolution explores the functional landscape of proteins. Despite our ability to experimentally inflict mutations at will, it remains diffi…

q-bio.GN2018

Figure 1 Theory Meets Figure 2 Experiments in the Study of Gene Expression

Rob Phillips, Nathan M. Belliveau, Griffin Chure +3

It is tempting to believe that we now own the genome. The ability to read and re-write it at will has ushered in a stunning period in the history of science. Nonetheless, there is…

q-bio.SC2017

Tuning transcriptional regulation through signaling: A predictive theory of allosteric induction

Manuel Razo-Mejia, Stephanie L. Barnes, Nathan M. Belliveau +4

Allosteric regulation is found across all domains of life, yet we still lack simple, predictive theories that directly link the experimentally tunable parameters of a system to its…