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Towards an understanding of the role of intrinsic protein disorder on plant adaptation to environmental challenges

机译:理解内在蛋白质障碍对植物适应环境挑战的作用

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Intrinsic protein disorder is an interesting structural feature where fully functional proteins lack a three-dimensional structure in solution. In this work, we estimated the relative content of intrinsic protein disorder in 96 plant proteomes including monocots and eudicots. In this analysis, we found variation in the relative abundance of intrinsic protein disorder among these major clades; the relative level of disorder is higher in monocots than eudicots. In turn, there is an inverse relationship between the degree of intrinsic protein disorder and protein length, with smaller proteins being more disordered. The relative abundance of amino acids depends on intrinsic disorder and also varies among clades. Within the nucleus, intrinsically disordered proteins are more abundant than ordered proteins. Intrinsically disordered proteins are specialized in regulatory functions, nucleic acid binding, RNA processing, and in response to environmental stimuli. The implications of this on plants’ responses to their environment are discussed.
机译:内在蛋白质障碍是一个有趣的结构特征,其中功能良好的蛋白质在溶液中缺乏三维结构。在这项工作中,我们估计了96种植物蛋白质蛋白质蛋白质蛋白质症的相对含量,包括单焦和犹太病。在该分析中,我们发现这些主要蛋白质中的内在蛋白质障碍的相对丰富的变化;单焦点的相对疾病水平比别人更高。反过来,在内在蛋白质障碍和蛋白质长度之间存在反比关系,较小的蛋白质更紊乱。氨基酸的相对丰度取决于内在疾病,在植物中也有所不同。在细胞核中,本质上无序的蛋白质比有序蛋白更丰富。本质无序的蛋白质专门用于调节功能,核酸结合,RNA加工,以及响应于环境刺激。讨论了对植物对其环境的影响的影响。

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