首页> 美国卫生研究院文献>other >Homologous U-box E3 Ubiquitin Ligases OsPUB2 and OsPUB3 Are Involved in the Positive Regulation of Low Temperature Stress Response in Rice (Oryza sativa L.)
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Homologous U-box E3 Ubiquitin Ligases OsPUB2 and OsPUB3 Are Involved in the Positive Regulation of Low Temperature Stress Response in Rice (Oryza sativa L.)

机译:同源U-box E3泛素天冬氨酸OsPUB2和OsPUB3参与水稻低温胁迫响应的正调控。

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摘要

Rice U-box E3 Ub ligases (OsPUBs) are implicated in biotic stress responses. However, their cellular roles in response to abiotic stress are poorly understood. In this study, we performed functional analyses of two homologous OsPUB2 and OsPUB3 in response to cold stress (4°C). OsPUB2 was up-regulated by high salinity, drought, and cold, whereas OsPUB3 was constitutively expressed. A subcellular localization assay revealed that OsPUB2 and OsPUB3 were localized to the exocyst positive organelle (EXPO)-like punctate structures. OsPUB2 was also localized to the nuclei. OsPUB2 and OsPUB3 formed a hetero-dimeric complex as well as homo-dimers in yeast cells and in vitro. OsPUB2/OsPUB3 exhibited self-ubiquitination activities in vitro and were rapidly degraded in the cell-free extracts with apparent half-lives of 150–160 min. This rapid degradation of OsPUB2/OsPUB3 was delayed in the presence of the crude extracts of cold-treated seedlings (apparent half-lives of 200–280 min). Moreover, a hetero-dimeric form of OsPUB2/OsPUB3 was more stable than the homo-dimers. These results suggested that OsPUB2 and OsPUB3 function coordinately in response to cold stress. OsPUB2- and OsPUB3-overexpressing transgenic rice plants showed markedly better tolerance to cold stress than did the wild-type plants in terms of survival rates, chlorophyll content, ion leakage, and expression levels of cold stress-inducible marker genes. Taken together, these results suggested that the two homologous rice U-box E3 Ub ligases OsPUB2 and OsPUB3 are positive regulators of the response to cold stress.
机译:水稻U-box E3 Ub连接酶(OsPUB)与生物胁迫反应有关。然而,人们对它们对非生物胁迫的反应中的细胞作用了解得很少。在这项研究中,我们对两个同源的OsPUB2和OsPUB3响应冷应激(4°C)进行了功能分析。高盐度,干旱和寒冷会上调OsPUB2,而组成型表达OsPUB3。亚细胞定位分析显示OsPUB2和OsPUB3定位于囊外阳性细胞器(EXPO)样的点状结构。 OsPUB2也定位于细胞核。 OsPUB2和OsPUB3在酵母细胞中和体外形成了异二聚体复合物和同二聚体。 OsPUB2 / OsPUB3在体外表现出自泛素化活性,并在无细胞提取物中迅速降解,表观半衰期为150-160分钟。 OsPUB2 / OsPUB3的这种快速降解在经过冷处理的幼苗的粗提物存在下(表观半衰期为200-280分钟)被延迟了。此外,OsPUB2 / OsPUB3的异二聚体形式比同二聚体更稳定。这些结果表明,OsPUB2和OsPUB3协同响应冷胁迫。在存活率,叶绿素含量,离子泄漏和冷胁迫诱导性标记基因的表达水平方面,过表达OsPUB2-和OsPUB3的转基因水稻植物显示出比野生型植物明显更好的抗冷胁迫能力。综上所述,这些结果表明两种同源的水稻U-box E3 Ub连接酶OsPUB2和OsPUB3是对冷胁迫响应的正调节剂。

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