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关注磷酸组氨酸。

Focus on phosphohistidine.

作者信息

Attwood P V, Piggott M J, Zu X L, Besant P G

机构信息

School of Biomedical, Biomolecular and Chemical Sciences, The University of Western Australia, Perth, Australia.

出版信息

Amino Acids. 2007 Jan;32(1):145-56. doi: 10.1007/s00726-006-0443-6. Epub 2006 Nov 15.

Abstract

Phosphohistidine has been identified as an enzymic intermediate in numerous biochemical reactions and plays a functional role in many regulatory pathways. Unlike the phosphoester bond of its cousins (phosphoserine, phosphothreonine and phosphotyrosine), the phosphoramidate (P-N) bond of phosphohistidine has a high DeltaG degrees of hydrolysis and is unstable under acidic conditions. This acid-lability has meant that the study of protein histidine phosphorylation and the associated protein kinases has been slower to progress than other protein phosphorylation studies. Histidine phosphorylation is a crucial component of cell signalling in prokaryotes and lower eukaryotes. It is also now becoming widely reported in mammalian signalling pathways and implicated in certain human disease states. This review covers the chemistry of phosphohistidine in terms of its isomeric forms and chemical derivatives, how they can be synthesized, purified, identified and the relative stabilities of each of these forms. Furthermore, we highlight how this chemistry relates to the role of phosphohistidine in its various biological functions.

摘要

磷酸组氨酸已被确定为众多生化反应中的一种酶促中间体,并在许多调节途径中发挥功能作用。与其同类物(磷酸丝氨酸、磷酸苏氨酸和磷酸酪氨酸)的磷酸酯键不同,磷酸组氨酸的磷酰胺(P-N)键具有较高的水解自由能,在酸性条件下不稳定。这种酸不稳定性意味着蛋白质组氨酸磷酸化及相关蛋白激酶的研究进展比其他蛋白质磷酸化研究要慢。组氨酸磷酸化是原核生物和低等真核生物细胞信号传导的关键组成部分。现在它在哺乳动物信号通路中也被广泛报道,并与某些人类疾病状态有关。本综述涵盖了磷酸组氨酸的化学性质,包括其异构体形式和化学衍生物、它们如何合成、纯化、鉴定以及每种形式的相对稳定性。此外,我们强调了这种化学性质与磷酸组氨酸在其各种生物学功能中的作用之间的关系。

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