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基于蛋白质结构的分析综述:揭示植物应激机制

Review of protein structure-based analyses that illuminate plant stress mechanisms.

作者信息

Shahid Fatima, Sen Neeladri, Rasni Hawa Najibah, Isa Nurulhikma Md, Ma Nyuk Ling, Orengo Christine, Lam Su Datt

机构信息

Department of Applied Physics, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi 43000, Malaysia.

Institute of Structural and Molecular Biology, Division of Biosciences, University College London, London, England WC1E 6BT, United Kingdom.

出版信息

Comput Struct Biotechnol J. 2025 Jul 13;27:3155-3166. doi: 10.1016/j.csbj.2025.07.021. eCollection 2025.

Abstract

Plants face formidable challenges due to environmental stresses, including pathogens, salt, drought, cold, heat, heavy metal exposure, and flooding, all of which affect growth and agricultural productivity. To combat these stresses, plants have evolved various adaptive mechanisms, including the expression of stress-response proteins. Exploring the three-dimensional structures of plant proteins can be valuable for discovering and characterising stress tolerance mechanisms at the molecular level. Until recently, large-scale analyses were not feasible due to the limited number of experimentally determined plant protein structures. However, the recently developed AlphaFold, RoseTTA-Fold, and ESM-fold protein structure prediction methods, along with their associated portals, now provide hundreds of millions of high-quality predicted 3D models, covering a wide range of plant proteins. This review highlights insights from recent structural investigations into plant stress response using experimental or predicted protein structures. We include analyses of diverse paralogs and isoforms and insights from molecular docking and molecular dynamics simulations. We consider the value of using experimental and predicted structural data in understanding the mechanisms of common stress-modulating plant proteins. Studying the structures of these proteins together with their inferred functions can aid improvements in crop productivity, help foster sustainable agriculture, and contribute to global food security efforts.

摘要

由于包括病原体、盐、干旱、寒冷、高温、重金属暴露和洪水在内的环境胁迫,植物面临着巨大的挑战,所有这些都会影响生长和农业生产力。为了应对这些胁迫,植物进化出了各种适应性机制,包括应激反应蛋白的表达。探索植物蛋白的三维结构对于在分子水平上发现和表征胁迫耐受机制可能具有重要价值。直到最近,由于实验确定的植物蛋白结构数量有限,大规模分析还不可行。然而,最近开发的AlphaFold、RoseTTA-Fold和ESM-fold蛋白结构预测方法及其相关平台,现在提供了数亿个高质量的预测三维模型,涵盖了广泛的植物蛋白。本综述重点介绍了最近使用实验或预测的蛋白结构对植物应激反应进行结构研究的见解。我们包括对不同旁系同源物和异构体的分析以及分子对接和分子动力学模拟的见解。我们考虑了使用实验和预测结构数据在理解常见的调节植物应激蛋白机制方面的价值。研究这些蛋白的结构及其推断的功能有助于提高作物生产力,促进可持续农业发展,并为全球粮食安全做出贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/948d/12302779/ff083366db88/ga1.jpg

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