Thiol-based redox proteomics in cancer research.

Abstract:

:Cancer cells maintain their intracellular ROS concentrations at required levels for their survival. Changes in ROS concentrations can regulate biochemical signaling mechanisms that control cell function. It has been demonstrated that ROS regulate the cellular events through redox regulation of redox-sensitive proteins (redox sensors). Upon oxidative stress, redox sensors undergo redox modifications that cause the allosteric changes of these proteins and endow them with different functions. Understanding the altered functions of redox sensors and the underlying mechanisms is critical for the development of novel cancer therapeutics. Recently, a series of high-throughput proteomics approaches have been developed for screening redox processes. In this manuscript, we review these methodologies and discuss the important redox sensors recently identified that are related to cancer.

journal_name

Proteomics

journal_title

Proteomics

authors

Yuan K,Liu Y,Chen HN,Zhang L,Lan J,Gao W,Dou Q,Nice EC,Huang C

doi

10.1002/pmic.201400164

subject

Has Abstract

pub_date

2015-01-01 00:00:00

pages

287-99

issue

2-3

eissn

1615-9853

issn

1615-9861

journal_volume

15

pub_type

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