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Extensive Evolution of Cereal Ribosome-Inactivating Proteins Translates into Unique Structural Features Activation Mechanisms and Physiological Roles

机译:谷物核糖体失活蛋白的广泛进化转化为独特的结构特征激活机制和生理作用

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摘要

Ribosome-inactivating proteins (RIPs) are a class of cytotoxic enzymes that can depurinate rRNAs thereby inhibiting protein translation. Although these proteins have also been detected in bacteria, fungi, and even some insects, they are especially prevalent in the plant kingdom. This review focuses on the RIPs from cereals. Studies on the taxonomical distribution and evolution of plant RIPs suggest that cereal RIPs have evolved at an enhanced rate giving rise to a large and heterogeneous RIP gene family. Furthermore, several cereal RIP genes are characterized by a unique domain architecture and the lack of a signal peptide. This advanced evolution of cereal RIPs translates into distinct structures, activation mechanisms, and physiological roles. Several cereal RIPs are characterized by activation mechanisms that include the proteolytic removal of internal peptides from the N-glycosidase domain, a feature not documented for non-cereal RIPs. Besides their role in defense against pathogenic fungi or herbivorous insects, cereal RIPs are also involved in endogenous functions such as adaptation to abiotic stress, storage, induction of senescence, and reprogramming of the translational machinery. The unique properties of cereal RIPs are discussed in this review paper.
机译:核糖体失活蛋白(RIP)是一类细胞毒性酶,可以使rRNA脱嘌呤,从而抑制蛋白质翻译。尽管这些蛋白质也已在细菌,真菌甚至某些昆虫中被检测到,但它们在植物界特别普遍。这篇评论集中在谷物的RIPs上。对植物RIP的分类分布和进化的研究表明,谷物RIP的进化速度加快,从而产生了一个庞大且异质的RIP基因家族。此外,一些谷物RIP基因的特征在于独特的结构域结构和信号肽的缺乏。谷物RIP的这种先进演变转化为独特的结构,激活机制和生理作用。几种谷物RIP的特征在于活化机制,包括从N-糖苷酶结构域蛋白水解去除内部肽,这是非谷物RIP尚未记录的特征。谷物RIP除具有防御病原真菌或草食性昆虫的作用外,还参与内源性功能,例如适应非生物胁迫,贮藏,诱导衰老和翻译机器重新编程。这篇综述文章讨论了谷物RIP的独特性能。

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