arrow
Return

Proofreading through spatial gradients

delete2020-12-24
delete12
delete
OA
AI
V
Vahe Galstyan
K
Kabir Husain
X
Xiao, Fangzhou
M
Murugan, Arvind *
P
Phillips, Rob *
DOI:10.7554/eLife.60415delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Key enzymatic processes use the nonequilibrium error correction mechanism called kinetic proofreading to enhance their specificity. The applicability of traditional proofreading schemes, however, is limited because they typically require dedicated structural features in the enzyme, such as a nucleotide hydrolysis site or multiple intermediate conformations. Here, we explore an alternative conceptual mechanism that achieves error correction by having substrate binding and subsequent product formation occur at distinct physical locations. The time taken by the enzyme-substrate complex to diffuse from one location to another is leveraged to discard wrong substrates. This mechanism does not have the typical structural requirements, making it easier to overlook in experiments. We discuss how the length scales of molecular gradients dictate proofreading performance, and quantify the limitations imposed by realistic diffusion and reaction rates. Our work broadens the applicability of kinetic proofreading and sets the stage for studying spatial gradients as a possible route to specificity.
Keywords:
MESSENGER-RNA LOCALIZATION
SIGNALING CASCADES
QUALITY-CONTROL
PROTEIN
ORGANIZATION
DIFFUSION
GOLGI

Journal

eLife cover
eLife
IF:
0
Papers:
1.8W
Citations:
16

Organization

C
California Institute of Technology
Scholars:
2.9W
Papers: 2.5W
Citations: 4.9W
U
university of chicago
Scholars:
4.4W
Papers: 3.7W
Citations: 80