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首页> 外文期刊>Plant Physiology and Biochemistry >Identification of a type II cystatin in Fragaria chiloensis: A proteinase inhibitor differentially regulated during achene development and in response to biotic stress-related stimuli
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Identification of a type II cystatin in Fragaria chiloensis: A proteinase inhibitor differentially regulated during achene development and in response to biotic stress-related stimuli

机译:胰蛋白酶体中II型胱抑素的鉴定:瘦蛋白抑制剂在瘦果发育期间差异调节,响应生物应力相关刺激

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摘要

The equilibrium between protein synthesis and degradation is key to maintaining efficiency in different physiological processes. The proteinase inhibitor cystatin regulates protease activities in different developmental and physiological contexts. Here we describe for the first time the identification and the biological function of the cysteine protease inhibitor cystatin of Fragaria chiloensis, FchCYS1. Based on primary sequence and 3D-structural homology modelling, FchCYS1 is a type II phytocystatin with high identity to other cystatins of the Fragaria genus. Both the papain-like and the legumain-like protease inhibitory domains are indeed functional, based on in vitro assays performed with Escherichia coli protein extracts containing recombinant FchCYS1. FchCYS1 is differentially-expressed in achenes of F. chiloensis fruits, with highest expression as the fruit reaches the ripened stage, suggesting a role in preventing degradation of storage proteins that will nourish the embryo during seed germination. Furthermore, FchCYS1 responds transcriptionally to the application of salicylic acid and to mechanical injury, strongly suggesting that FchCYS1 could be involved in the response against pathogen attack. Overall these results point to a role for FchCYS1 in diverse physiological processes in F. chiloensis.
机译:蛋白质合成与降解之间的平衡是在不同生理过程中保持效率的关键。蛋白酶抑制剂胱抑素调节不同发育和生理环境中的蛋白酶活性。在这里,我们首次描述了植物膜蛋白酶抑制剂的鉴定和生物学功能FCHCYS1的钙氏菌的半胱氨酸蛋白酶抑制剂胱抑素。基于初级序列和3D结构同源性建模,FCHCYS1是II型植物植物,其具有高同一性的植物属植物属的其他胱氨酸酯。毛木皮和肉桂样蛋白酶抑制域确实是功能的,基于用含有重组FCHCYS1的大肠杆菌蛋白质提取物进行的体外测定。 Fchcys1在F.嗜酸钙果实的酸度中表达,具有最高表达,因为水果达到成熟的阶段,表明在防止在种子萌发过程中滋养胚胎的储存蛋白质的降解作用。此外,FCHCYS1对施用水杨酸和机械损伤的响应转录,强烈表明FCHCYS1可以参与对病原体攻击的反应。总体而言,这些结果指出了FCHCYS1在F.Chiloensis中不同生理过程中的作用。

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