首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Heme Assimilation in Schizosaccharomyces pombe Requires Cell-surface-anchored Protein Shu1 and Vacuolar Transporter Abc3
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Heme Assimilation in Schizosaccharomyces pombe Requires Cell-surface-anchored Protein Shu1 and Vacuolar Transporter Abc3

机译:粟酒裂殖酵母中的血红素同化需要细胞表面锚定的蛋白质Shu1和液泡转运蛋白Abc3

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摘要

The Schizosaccharomyces pombe shu1+ gene encodes a cell-surface protein required for assimilation of exogenous heme. In this study, shaving experiments showed that Shu1 is released from membrane preparations when spheroplast lysates are incubated with phosphoinositide-specific phospholipase C (PI-PLC). Shu1 cleavability by PI-PLC and its predicted hydropathy profile strongly suggested that Shu1 is a glycosylphosphatidylinositol-anchored protein. When heme biosynthesis is selectively blocked in hem1Δ mutant cells, the heme analog zinc mesoporphyrin IX (ZnMP) first accumulates into vacuoles and then subsequently, within the cytoplasm in a rapid and Shu1-dependent manner. An HA4-tagged shu1+ allele that retained wild-type function localizes to the cell surface in response to low hemin concentrations, but under high hemin concentrations, Shu1-HA4 re-localizes to the vacuolar membrane. Inactivation of abc3+, encoding a vacuolar membrane transporter, results in hem1Δ abc3Δ mutant cells being unable to grow in the presence of hemin as the sole iron source. In hem1Δ abc3Δ cells, ZnMP accumulates primarily in vacuoles and does not sequentially accumulate in the cytosol. Consistent with a role for Abc3 as vacuolar hemin exporter, results with hemin-agarose pulldown assays showed that Abc3 binds to hemin. In contrast, an Abc3 mutant in which an inverted Cys-Pro motif had been replaced with Ala residues fails to bind hemin with high affinity. Taken together, these results show that Shu1 undergoes rapid hemin-induced internalization from the cell surface to the vacuolar membrane and that the transporter Abc3 participates in the mobilization of stored heme from the vacuole to the cytosol.
机译:粟酒裂殖酵母shu1 + 基因编码同化外源血红素所需的细胞表面蛋白。在这项研究中,剃刮实验表明,将原生质球裂解液与磷酸肌醇特异性磷脂酶C(PI-PLC)孵育后,Shu1从膜制剂中释放出来。 PI-PLC对Shu1的可切割性及其预测的亲水性特征强烈表明,Shu1是糖基磷脂酰肌醇固定的蛋白。当血红素生物合成在hem1Δ突变细胞中被选择性阻断时,血红素类似物锌中卟啉IX(ZnMP)首先积累为液泡,然后以快速且依赖Shu1的方式积累在细胞质内。保留了野生型功能的带有HA4标签的shu1 + 等位基因在低血红素浓度下响应时定位在细胞表面,但在高血红素浓度下,Shu1-HA4重新定位在液泡膜上。编码液泡膜转运蛋白的abc3 + 失活导致hem1Δabc3Δ突变细胞无法在以血红素为唯一铁源的情况下生长。在hem1Δabc3Δ细胞中,ZnMP主要在液泡中积累,而没有顺序地在细胞质中积累。与Abc3作为液泡中的hemin出口者的作用一致,hemin-agarose下拉测定的结果表明Abc3与hemin结合。相反,其中反向Cys-Pro基序已被Ala残基替代的Abc3突变体不能以高亲和力结合血红素。综上所述,这些结果表明,Shu1从细胞表面到液泡膜经历了快速的血红素诱导的内在化,转运蛋白Abc3参与了从液泡到细胞质的转移血红素的动员。

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