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Cation diffusion facilitator Cis4 is implicated in Golgi membrane trafficking via regulating zinc homeostasis in fission yeast

机译:阳离子扩散促进剂Cis4通过调节裂变酵母中的锌稳态来参与高尔基膜运输。

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We screened for mutations that confer sensitivities to the calcineurin inhibitor FK506 and to a high concentration of MgCl2 and isolated the cis4-1 mutant, an allele of the gene encoding a cation diffusion facilitator (CDF) protein that is structurally related to zinc transporters. Consistently, the addition of extracellular Zn2+ suppressed the phenotypes of the cis4 mutant cells. The cis4 mutants and the mutant cells of another CDF-encoding gene SPBC16E9.14c ( we named zrg(17+)) shared common and nonadditive zinc-suppressible phenotypes, and Cis4 and Zrg17 physically interacted. Cis4 localized at the cis-Golgi, suggesting that Cis4 is responsible for Zn2+ uptake to the cis-Golgi. The cis4 mutant cells showed phenotypes such as weak cell wall and decreased acid phosphatase secretion that are thought to be resulting from impaired membrane trafficking. In addition, the cis4 deletion cells showed synthetic growth defects with all the four membrane-trafficking mutants tested, namely ypt3-i5, ryh1-i6, gdi1-i11, and apm1-1. Interestingly, the addition of extracellular Zn2+ significantly suppressed the phenotypes of the ypt3-i5 and apm1-1 mutant cells. These results suggest that Cis4 forms a heteromeric functional complex with Zrg17 and that Cis4 is implicated in Golgi membrane trafficking through the regulation of zinc homeostasis in fission yeast.
机译:我们筛选了赋予钙调神经磷酸酶抑制剂FK506和高浓度MgCl2敏感度的突变,并分离了cis4-1突变体,它是编码与锌转运蛋白结构相关的阳离子扩散促进剂(CDF)蛋白的基因的等位基因。一致地,细胞外Zn 2+的添加抑制了cis4突变细胞的表型。 cis4突变体和另一个CDF编码基因SPBC16E9.14c(我们称为zrg(17+))的突变细胞具有共同的和非可加的锌抑制表型,并且Cis4和Zrg17在物理上相互作用。 Cis4定位于顺式高尔基体,表明Cis4负责Zn2 +向顺式高尔基体的吸收。 cis4突变细胞表现出表型,如细胞壁薄弱和酸性磷酸酶分泌减少,这被认为是由于膜运输受损所致。此外,cis4缺失细胞在所有测试的四个膜运输突变体ypt3-i5,ryh1-i6,gdi1-i11和apm1-1中均显示出合成生长缺陷。有趣的是,细胞外Zn2 +的添加显着抑制了ypt3-i5和apm1-1突变细胞的表型。这些结果表明,Cis4与Zrg17形成异源功能复合物,并且通过调节裂变酵母中的锌稳态,Cis4与高尔基体膜运输有关。

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