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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Cucumber Golgi protein CsMTP5 forms a Zn-transporting heterodimer with high molecular mass protein CsMTP12
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Cucumber Golgi protein CsMTP5 forms a Zn-transporting heterodimer with high molecular mass protein CsMTP12

机译:黄瓜高尔基蛋白CSMTP5形成具有高分子质量蛋白CSMTP12的Zn输送异二聚体

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摘要

Heterodimeric complexes formed by members of the cation facilitator (CDF) family catalyse the import of Zn into the secretory pathway of yeast and vertebrate cells. Orthologous proteins AtMTP5 and AtMTP12 from Arabidopsis have also been shown to form a heterodimeric complex at the Golgi compartment of plant cells that possibly transport Zn. In this study we show that cucumber proteins CsMTP5 and CsMTP12 form a functional heterodimer that is involved in the loading of Zn into the ER lumen under low Zn, and not in the detoxification of yeast from Zn excess through vesicle-mediated exocytosis.. Using specific antibodies, we demonstrate that CsMTP5 is localized at the Golgi compartment of cucumber cells and is markedly up-regulated upon Zn deficiency. The level of CsMTP5 transcript in cucumber is also significantly elevated in Zn-limiting conditions, whereas the expression of CsMTP12 is independent of the availability of Zn. Therefore we propose that the cucumber heterodimeric complex CsMTP5-CsMTP12 functions to deliver Zn to Zn-dependent proteins of the Golgi compartment and is regulated by zinc at the level of CsMTP5 transcription.
机译:由阳离子促进剂(CDF)家族成员形成的异二聚体复合物催化进入酵母和脊椎动物细胞的分泌途径。从拟南芥中,也显示出从拟南芥的直置蛋白质ATMTP5和ATMTP12在可能运输Zn的植物细胞的Golgi隔室中形成异二聚体络合物。在这项研究中,我们表明黄瓜蛋白CSMTP5和CSMTP12形成官能异二聚体,其涉及在低Zn下的Zn加入Zn中的Zn,而不是通过囊泡介导的外毒性术从Zn过量的酵母中的排毒。使用特异性抗体,我们证明CSMTP5在黄瓜细胞的Golgi隔室中局部化,并且在Zn缺乏时明显上调。在黄瓜的CSMTP5转录物的水平在Zn限制条件下也显着升高,而CSMTP12的表达与Zn的可用性无关。因此,我们提出黄瓜异二聚体复合体CSMTP5-CSMTP12用于将Zn递送至Zn依赖于Golgi隔室的蛋白质,并通过锌在CSMTP5转录水平下调节。

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