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首页> 外文期刊>Plant physiology >SPA Proteins Affect the Subcellular Localization of COP1 in the COP1/SPA Ubiquitin Ligase Complex during Photomorphogenesis
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SPA Proteins Affect the Subcellular Localization of COP1 in the COP1/SPA Ubiquitin Ligase Complex during Photomorphogenesis

机译:SPA蛋白在光学发生期间影响COP1 / SPA泛素连接酶复合物中COP1的亚细胞定位

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摘要

The Arabidopsis (Arabidopsis thaliana) COP1/SPA ubiquitin ligase is a central repressor that suppresses light signaling in darkness by targeting positive regulators of the light response, mainly transcription factors, for degradation. Light inactivates COP1/SPA, in part by excluding COP1 from the nucleus. SPA proteins are essential cofactors of COP1, but their exact role in the COP1/SPA complex is thus far unknown. To unravel a potential role of SPA proteins in COP1 nucleocytoplasmic partitioning, we monitored the subcellular localization of COP1 in a spa1234 quadruple mutant (spaQn). We analyzed a YFP-COP1-expressing transgenic line and endogenous COP1 after subcellular fractionation. In dark-grown seedlings, both YFP-COP1 and endogenous COP1 accumulated in the nucleus in the absence and presence of SPA proteins, indicating that SPA proteins are not required for nuclear localization of COP1 in darkness. In contrast, in white light-grown seedlings, spaQn mutants failed to relocalize COP1 from the nucleus to the cytoplasm. Hence, SPA proteins are necessary for the light-controlled change in COP1 subcellular localization. We conclude that SPA proteins have a dual role: (1) they are required for light-responsiveness of COP1 subcellular localization, and (2) they promote COP1 activity in darkness in a fashion that is independent of the nuclear import/nuclear retention of COP1.
机译:拟南芥(拟南芥)COP1 / SPA泛素连接酶是一种中央阻遏物,其通过靶向光反应的阳性调节剂,主要是转录因子,用于降解来抑制黑暗中的光信号。通过从核中排除COP1,光灭活COP1 / SPA。 SPA蛋白是COP1的必备官方acoftors,但它们在COP1 / SPA综合体中的确切作用远远未知。为了解开SPA蛋白在COP1核细胞质分配中的潜在作用,我们监测了SPA1234四突变体(SPAQN)中COP1的亚细胞定位。在亚细胞分级后,我们分析了表达YFP-COP1表达的转基因系和内源COP1。在深色生长的幼苗中,在核心中累积的YFP-COP1和内源COP1在没有和存在SPA蛋白的存在下,表明SPA蛋白不是COP1在黑暗中的核定位所必需的。相反,在白光幼苗中,Spaqn突变体未能将COP1从细胞核中重新定位到细胞质中。因此,SPA蛋白是COP1亚细胞定位的光控制变化所必需的。我们得出结论,SPA蛋白具有双重作用:(1)COP1亚细胞定位的轻响应能力所必需的,(2)他们以独立于COP1的时尚促进黑暗中的COP1活动。 。

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