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首页> 外文期刊>Journal of Experimental Botany >Phosphorylation regulates the assembly of chloroplast import machinery.
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Phosphorylation regulates the assembly of chloroplast import machinery.

机译:磷酸化调节叶绿体进口机械的组装。

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摘要

Chloroplast function depends on the translocation of cytosolically synthesized precursor proteins into the organelle. The recognition and transfer of most precursor proteins across the outer membrane depend on a membrane inserted complex. Two receptor components of this complex, Toc34 and Toc159, are GTPases, which can be phosphorylated by kinases present in the hosting membrane. However, the physiological function of phosphorylation is not yet understood in detail. It is demonstrated that both receptors are phosphorylated within their G-domains. In vitro, the phosphorylation of Toc34 disrupts both homo- and heterodimerization of the G-domains as determined using a phospho-mimicking mutant. In endogenous membranes this mutation or phosphorylation of the wild-type receptor disturbs the association of Toc34, but not of Toc159 with the translocation pore. Therefore, phosphorylation serves as an inhibitor for the association of Toc34 with other components of the complex and phosphorylation can now be discussed as a mechanism to exchange different isoforms of Toc34 within this ensemble.
机译:叶绿体功能取决于细胞质合成的前体蛋白向细胞器的转运。大多数前体蛋白在外膜上的识别和转移取决于膜插入复合物。该复合物的两个受体成分Toc34和Toc159是GTPases,可以被宿主膜中存在的激酶磷酸化。但是,尚未详细了解磷酸化的生理功能。已证明两种受体在其G结构域内均被磷酸化。在体外,Toc34的磷酸化会破坏G结构域的均二聚和异二聚化,这是通过模拟磷酸化突变体确定的。在内源性膜中,野生型受体的这种突变或磷酸化干扰了Toc34而不是Toc159与易位孔的结合。因此,磷酸化可作为Toc34与复合物其他成分缔合的抑制剂,现在可以将磷酸化作为在此集合内交换Toc34不同同工型的机制进行讨论。

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