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首页> 外文期刊>Environmental and experimental botany >Role of salt-induced RING finger protein 3 (OsSIRP3), a negative regulator of salinity stress response by modulating the level of its target proteins
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Role of salt-induced RING finger protein 3 (OsSIRP3), a negative regulator of salinity stress response by modulating the level of its target proteins

机译:通过调节其靶蛋白的水平,盐诱导的无牙蛋白3(OSSIRP3)的作用,负调节剂的盐度应力响应

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摘要

As sessile organisms, plants are always exposed to various abiotic stresses, and therefore, they have developed defense mechanisms against abiotic stresses. Ubiquitin-mediated proteasomal degradation is an important mechanism that regulates the level of proteins in plants. The present study describes Oryza saliva salt-induced RING finger protein 3 (OsSIRP3), a functional RING E3 ligase, that is possibly involved in salt-stress response. The transcript of OsSIRP3 gene was highly expressed in whole rice samples, such as root and shoot, after exposure to high salinity stress. Furthermore, in vitro ubiquitination assay demonstrated that OsSIRP3 has E3 ligase activity due to RING H2 domain. The results revealed the interaction of OsSIRP3 with both salt-induced and non-induced proteins, leading to their degradation via ubiquitin (Ub)/26S proteasome-mediated system. Overexpression of OsSIRP3 in Arabidopsis resulted in hypersensitivity phenotypes under salinity stress during seed germination and root growth. These findings suggest that OsSIRP3 negatively regulates salinity stress response by modulating the level of its target proteins.
机译:作为无梗死生物体,植物总是暴露于各种非生物胁迫,因此,它们已经开发了对非生物胁迫的防御机制。泛素介导的蛋白酶体降解是调节植物中蛋白质水平的重要机制。本研究描述了Oryza唾液盐诱导的无名指蛋白3(OSSIRP3),功能环E3连接酶,可能涉及盐应激反应。在暴露于高盐度应力之后,在全水稻样品中高度表达ossirp3基因的转录物,例如根和芽。此外,体外泛素化测定证明,由于环H 2结构域,OSSIRP3具有E3连接酶活性。结果表明,OSSIRP3与盐诱导和非诱导蛋白质的相互作用,导致通过泛素(UB)/ 26S蛋白酶体介导的系统的降解。拟南芥ossirp3的过度表达导致种子萌发过程中盐度应激的过敏表型和根生长。这些发现表明,OSSIRP3通过调节其靶蛋白的水平来负面调节盐度应力响应。

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