Protein tyrosine nitration in cellular signal transduction pathways.

IF 2.3
Vasily A Yakovlev, Ross B Mikkelsen
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引用次数: 52

Abstract

How specificity and reversibility in tyrosine nitration are defined biologically in cellular systems is poorly understood. As more investigations identify proteins involved in cell regulatory pathways in which only a small fraction of that protein pool is modified by nitration to affect cell function, the mechanisms of biological specificity and reversal should come into focus. In this review experimental evidence has been summarized to suggest that tyrosine nitration is a highly selective modification and under certain physiological conditions fulfills the criteria of a physiologically relevant signal. It can be specific, reversible, occurs on a physiological time scale, and, depending on a target, can result in either activation or inhibition.

蛋白酪氨酸硝化在细胞信号转导通路中的作用。
在细胞系统中,酪氨酸硝化的特异性和可逆性是如何被生物学地定义的,人们知之甚少。随着越来越多的研究发现参与细胞调控途径的蛋白质,其中只有一小部分蛋白质库被硝化修饰以影响细胞功能,生物特异性和逆转的机制应该成为重点。本文总结了酪氨酸硝化是一种高度选择性的修饰,在一定的生理条件下满足生理相关信号的标准。它可以是特异性的,可逆的,在生理时间尺度上发生,并且,取决于一个目标,可以导致激活或抑制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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