paper-with-me

홈 › Papers

Allostery and Kinetic Proofreading

2020-05-26 · Vahe Galstyan, Rob Phillips

Kinetic proofreading is an error correction mechanism present in the processes of the central dogma and beyond, and typically requires the free energy of nucleotide hydrolysis for its operation. Though the molecular players of many biological proofreading schemes are known, our understanding of how energy consumption is managed to promote fidelity remains incomplete. In our work, we introduce an alternative conceptual scheme called 'the piston model of proofreading' where enzyme activation through hydrolysis is replaced with allosteric activation achieved through mechanical work performed by a piston on regulatory ligands. Inspired by Feynman's ratchet and pawl mechanism, we consider a mechanical engine designed to drive the piston actions powered by a lowering weight, whose function is analogous to that of ATP synthase in cells. Thanks to its mechanical design, the piston model allows us to tune the 'knobs' of the driving engine and probe the graded changes and trade-offs between speed, fidelity and energy dissipation. It provides an intuitive explanation of the conditions necessary for optimal proofreading and reveals the unexpected capability of allosteric molecules to beat the Hopfield limit of fidelity by leveraging the diversity of states available to them. The framework that we built for the piston model can also serve as a basis for additional studies of driven biochemical systems.

📄 PDF Abstract BibTeX arXiv:2005.13066

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Timing consistency of T cell receptor activation in a stochastic model combining kinetic segregation and proofreading

2024-12-09 · Thorsten Prüstel, Martin Meier-Schellersheim

T cell receptor signaling must operate reliably under tight time constraints. While assuming quite different mechanisms, two prominent models of T cell receptor activation, kinetic segregation and kinetic proofreading, b…

Proofreading through spatial gradients

2020-05-23 · Vahe Galstyan, Kabir Husain, Fangzhou Xiao, Arvind Murugan 외

Key enzymatic processes in biology use the nonequilibrium error correction mechanism called kinetic proofreading to enhance their specificity. Kinetic proofreading typically requires several dedicated structural features…

Specificity

Reliable ligand discrimination in stochastic multistep kinetic proofreading: First passage time vs. product counting strategies

2024-02-07 · Xiangting Li, Tom Chou

Cellular signaling, crucial for biological processes like immune response and homeostasis, relies on specificity and fidelity in signal transduction to accurately respond to stimuli amidst biological noise. Kinetic proof…

Specificity

Stochastic proofreading mechanism alleviates crosstalk in transcriptional regulation

2015-04-22

Gene expression is controlled primarily by interactions between transcription factor proteins (TFs) and the regulatory DNA sequence, a process that can be captured well by thermodynamic models of regulation. These models…

Specificity

Limiting energy dissipation induces glassy kinetics in single cell high precision responses

2016-01-29

Single cells often generate precise responses by involving dissipative out-of-thermodynamic equilibrium processes in signaling networks. The available free energy to fuel these processes could become limited depending on…