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AlphaFold2 捕获了 HAMP 信号结构域的构象景观。

AlphaFold2 captures the conformational landscape of the HAMP signaling domain.

机构信息

Laboratory of Structural Bioinformatics, Centre of New Technologies, University of Warsaw, Warsaw, Poland.

Institute of Evolutionary Biology, Faculty of Biology, Biological and Chemical Research Centre, University of Warsaw, Warsaw, Poland.

出版信息

Protein Sci. 2024 Jan;33(1):e4846. doi: 10.1002/pro.4846.

Abstract

In this study, we present a conformational landscape of 5000 AlphaFold2 models of the Histidine kinases, Adenyl cyclases, Methyl-accepting proteins and Phosphatases (HAMP) domain, a short helical bundle that transduces signals from sensors to effectors in two-component signaling proteins such as sensory histidine kinases and chemoreceptors. The landscape reveals the conformational variability of the HAMP domain, including rotations, shifts, displacements, and tilts of helices, many combinations of which have not been observed in experimental structures. HAMP domains belonging to a single family tend to occupy a defined region of the landscape, even when their sequence similarity is low, suggesting that individual HAMP families have evolved to operate in a specific conformational range. The functional importance of this structural conservation is illustrated by poly-HAMP arrays, in which HAMP domains from families with opposite conformational preferences alternate, consistent with the rotational model of signal transduction. The only poly-HAMP arrays that violate this rule are predicted to be of recent evolutionary origin and structurally unstable. Finally, we identify a family of HAMP domains that are likely to be dynamic due to the presence of a conserved pi-helical bulge. All code associated with this work, including a tool for rapid sequence-based prediction of the rotational state in HAMP domains, is deposited at https://github.com/labstructbioinf/HAMPpred.

摘要

在这项研究中,我们展示了 5000 个 AlphaFold2 模型的构象景观,这些模型是 Histidine kinases、Adenyl cyclases、Methyl-accepting proteins 和 Phosphatases(HAMP)结构域的模型,这是一个短的螺旋束,它将传感器的信号传递到双组分信号蛋白中的效应器,如感应组氨酸激酶和化学感受器。该景观揭示了 HAMP 结构域的构象可变性,包括螺旋的旋转、移动、位移和倾斜,其中许多组合在实验结构中都没有观察到。属于单个家族的 HAMP 结构域往往占据景观的特定区域,即使它们的序列相似性较低,这表明单个 HAMP 家族已经进化到在特定的构象范围内起作用。这种结构保守性的功能重要性通过多 HAMP 阵列得到说明,其中来自具有相反构象偏好的家族的 HAMP 结构域交替排列,与信号转导的旋转模型一致。唯一违反此规则的多 HAMP 阵列预计是最近进化起源的,结构不稳定。最后,我们确定了一组 HAMP 结构域,由于存在保守的 pi-螺旋突环,它们可能是动态的。与这项工作相关的所有代码,包括用于快速基于序列预测 HAMP 结构域旋转状态的工具,都已存储在 https://github.com/labstructbioinf/HAMPpred 上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf4a/10731501/01d4953acb8c/PRO-33-e4846-g002.jpg

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