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蛋白质磷酸化动力学:由于当前方法学限制而未被探索:连续磷酸化的动力学。

Protein Phosphorylation Dynamics: Unexplored Because of Current Methodological Limitations: Dynamics of Processive Phosphorylation.

机构信息

Université Côte d'Azur (UCA), Agrobiotech Institute, INRA, CNRS, ISA, 06270, France.

出版信息

Bioessays. 2020 Apr;42(4):e1900149. doi: 10.1002/bies.201900149. Epub 2020 Feb 27.

Abstract

The study of intrinsic phosphorylation dynamics and kinetics in the context of complex protein architecture in vivo has been challenging: Method limitations have prevented significant advances in the understanding of the highly variable turnover of phosphate groups, synergy, and cooperativity between P-sites. However, over the last decade, powerful analytical technologies have been developed to determine the full catalog of the phosphoproteome for many species. The curated databases of phospho sites found by mass spectrometry analysis and the computationally predicted sites based on the linear sequence of kinase motifs are valuable tools. They allow investigation of the complexity of phosphorylation in vivo, albeit with strong discrepancies between different methods. A series of hypothetical scenarios on combinatorial processive phosphorylation is proposed that are likely unverifiable with current methodologies. These proposed a priori postulates could be considered as possible extensions of the known schemes of the activation/inhibition signaling process in vivo.

摘要

在体内复杂蛋白质结构的背景下研究内在磷酸化动力学和动态一直具有挑战性

方法的局限性阻碍了对磷酸基团高度变化的周转率、协同作用和 P 位之间的合作关系的理解取得重大进展。然而,在过去十年中,已经开发出强大的分析技术来确定许多物种的完整磷酸蛋白质组目录。通过质谱分析发现的磷酸化位点的精心整理数据库和基于激酶基序线性序列计算预测的位点是有价值的工具。它们允许研究体内磷酸化的复杂性,尽管不同方法之间存在很大差异。提出了一系列关于组合式连续磷酸化的假设情况,这些情况可能无法通过当前的方法验证。这些先验假设可以被认为是体内激活/抑制信号转导过程的已知方案的可能扩展。

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