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Multiple polyamine transport systems on the vacuolar membrane in yeast.

机译:酵母液泡膜上的多个多胺转运系统。

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摘要

We recently identified a gene (TPO1, YLL028w) that encodes a polyamine transport protein on the vacuolar membrane in yeast [Tomitori, Kashiwagi, Sakata, Kakinuma and Igarashi (1999) J. Biol. Chem. 274, 3265-3267]. Because the existence of one or more other genes for a polyamine transport protein on the vacuolar membrane was expected, we searched sequence databases for homologues of the protein encoded by TPO1. Membrane proteins encoded by the open reading frames YGR138c (TPO2), YPR156c (TPO3) and YOR273c (TPO4) were postulated to be polyamine transporters and, indeed, were subsequently shown to be polyamine transport proteins on the vacuolar membrane. Cells overexpressing these genes were resistant to polyamine toxicity and showed an increase in polyamine uptake activity and polyamine content in vacuoles. Furthermore, cells in which these genes were disrupted showed an increased sensitivity to polyamine toxicity and a decrease in polyamine uptake activity and polyamine content in vacuoles. Resistance to polyamine toxicity in cells overexpressing the genes was overcome by bafilomycin A(1), an inhibitor of the vacuolar H(+)-ATPase. Among the four polyamine transporters, those encoded by TPO2 and TPO3 were specific for spermine, whereas those encoded by TPO1 and TPO4 recognized spermidine and spermine. These results suggest that polyamine content in the cytoplasm of yeast is elaborately regulated by several polyamine transport systems in vacuoles. Furthermore, it was shown that Glu-207, Glu-324 (or Glu-323) and Glu-574 of TPO1 protein were important for the transport activity.
机译:我们最近鉴定了在酵母的液泡膜上编码多胺转运蛋白的基因(TPO1,YLL028w)[Tomitori,Kashiwagi,Sakata,Kakinuma和Igarashi(1999)J.化学274,3265-3267]。由于预期液泡膜上存在多胺转运蛋白的一个或多个其他基因,因此我们在序列数据库中搜索了由TPO1编码的蛋白的同源物。由开放阅读框YGR138c(TPO2),YPR156c(TPO3)和YOR273c(TPO4)编码的膜蛋白被假定为多胺转运蛋白,实际上,随后被证明是液泡膜上的多胺转运蛋白。过表达这些基因的细胞对多胺毒性有抵抗力,并显示多胺摄取活性和液泡中多胺含量增加。此外,其中这些基因被破坏的细胞显示出对多胺毒性的敏感性增加,并且多胺摄取活性和液泡中的多胺含量降低。对巴胺霉素A(1),液泡H(+)-ATPase的抑制剂,克服了过表达基因的细胞对多胺毒性的抗性。在这四个多胺转运蛋白中,由TPO2和TPO3编码的转运蛋白对精胺特异,而由TPO1和TPO4编码的转运蛋白识别亚精胺和精胺。这些结果表明,酵母细胞质中的多胺含量受液泡中几种多胺转运系统的调控。此外,已显示TPO1蛋白的Glu-207,Glu-324(或Glu-323)和Glu-574对于转运活性是重要的。

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