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A mechanistic model of COR15 protein function in plant freezing tolerance: integration of structural and functional characteristics

机译:COR15蛋白在植物抗冻性中功能的机理模型:结构和功能特征的整合

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摘要

Plants as sessile organisms are strongly challenged by environmental stresses. Many plants species are able to cold-acclimate, acquiring higher freezing tolerance upon exposure to low but non-freezing temperatures. Among a plethora of adaptational processes, this involves the accumulation of cold regulated (COR) proteins that are assumed to stabilize and protect cellular structures during freezing. However, their molecular functions are largely unknown. We recently reported a comprehensive study of 2 intrinsically disordered cold regulated chloroplast proteins, COR15A and COR15B from Arabidopsis thaliana. They are necessary for full cold acclimation. During freezing, they stabilize leaf cells through folding and binding to chloroplast membranes. Contrary to evidence from in-vitro experiments, they play no role in enzyme stabilization in vivo. Elucidating these major functional and structural characteristics and estimation of protein abundance allow us to propose a detailed model for the mode of action of the two COR15 proteins.
机译:植物作为固着生物受到环境压力的强烈挑战。许多植物能够进行冷驯化,即使暴露于低温但非冻结的温度下也具有较高的抗冻性。在众多适应过程中,这涉及冷调节(COR)蛋白的积累,这些蛋白被认为在冷冻过程中稳定并保护了细胞结构。但是,它们的分子功能很大程度上未知。我们最近报道了来自拟南芥的2种内在失调的冷调节叶绿体蛋白COR15A和COR15B的综合研究。它们对于充分的冷驯化是必需的。在冷冻过程中,它们通过折叠并与叶绿体膜结合来稳定叶细胞。与体外实验的证据相反,它们在体内酶稳定中不起作用。阐明这些主要的功能和结构特征以及蛋白质丰度的估算使我们能够为两种COR15蛋白质的作用方式提出详细的模型。

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