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原核生物蛋白质组中的无规则亲水序列与脱水耐受性和宿主相关性相关。

Unstructured hydrophilic sequences in prokaryotic proteomes correlate with dehydration tolerance and host association.

机构信息

Institut National de la Santé et de la Recherche Médicale U1001, Université Paris Descartes, Faculté de Médecine, 156 rue de Vaugirard, 75730 Paris Cedex 15, France.

出版信息

J Mol Biol. 2010 Oct 8;402(5):775-82. doi: 10.1016/j.jmb.2010.08.012. Epub 2010 Aug 13.

Abstract

Water loss or desiccation is among the most life-threatening stresses. It leads to DNA double-strand breakage, protein aggregation, cell shrinkage, and low water activity precluding all biological functions. Yet, in all kingdoms of life, rare organisms are resistant to desiccation through prevention or reversibility of such damage. Here, we explore possible hallmarks of prokaryotic desiccation tolerance in their proteomes. The content of unstructured, low complexity (LC) regions was analyzed in a total of 460 bacterial and archaeal proteomes. It appears that species endowed with proteomes abundant in unstructured hydrophilic LC regions are desiccation-tolerant or sporulating bacteria, halophilic archaea and bacteria, or host-associated species. In the desiccation- and radiation-resistant bacterium Deinococcus radiodurans, most proteins that contain large hydrophilic LC regions have unassigned function, but those with known function are mostly involved in diverse cellular recovery processes. Such LC regions are typically absent in orthologous proteins in desiccation-sensitive species. D. radiodurans encodes also special LC proteins, akin to those associated with desiccation resistance of plant seeds and some plants and animals. Therefore, we postulate that large unstructured hydrophilic LC regions and proteins provide for cellular resistance to dehydration and we discuss mechanisms of their protective activity.

摘要

失水或干燥是最具威胁生命的压力之一。它会导致 DNA 双链断裂、蛋白质聚集、细胞收缩和低水活度,从而阻止所有生物功能。然而,在所有生命领域中,很少有生物体能够通过防止或逆转这种损伤来抵抗干燥。在这里,我们探讨了原核生物在其蛋白质组中对干燥耐受性的可能特征。在总共 460 种细菌和古菌的蛋白质组中分析了无规则、低复杂度(LC)区域的含量。似乎具有富含无规则亲水 LC 区域的蛋白质组的物种是耐干燥或形成孢子的细菌、嗜盐古菌和细菌,或者是与宿主相关的物种。在抗干燥和辐射的细菌 Deinococcus radiodurans 中,大多数含有大的亲水 LC 区域的蛋白质没有指定的功能,但那些具有已知功能的蛋白质大多参与了各种细胞恢复过程。在对干燥敏感的物种的同源蛋白中,通常不存在这种 LC 区域。D. radiodurans 还编码特殊的 LC 蛋白,类似于与植物种子和一些植物和动物的干燥抗性相关的蛋白。因此,我们假设大的无规则亲水 LC 区域和蛋白质为细胞提供了对脱水的抗性,我们讨论了它们的保护活性的机制。

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