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由PHO84编码的酿酒酵母高亲和力磷酸盐转运蛋白在锰稳态中也发挥作用。

The Saccharomyces cerevisiae high affinity phosphate transporter encoded by PHO84 also functions in manganese homeostasis.

作者信息

Jensen Laran T, Ajua-Alemanji Mispa, Culotta Valeria Cizewski

机构信息

Department of Environmental Health Sciences, Johns Hopkins University, Bloomberg School of Public Health, 615 N. Wolfe Street, Rm. 7032, Baltimore, MD 21205, USA.

出版信息

J Biol Chem. 2003 Oct 24;278(43):42036-40. doi: 10.1074/jbc.M307413200. Epub 2003 Aug 15.

Abstract

In the bakers' yeast Saccharomyces cerevisiae, high affinity manganese uptake and intracellular distribution involve two members of the Nramp family of genes, SMF1 and SMF2. In a search for other genes involved in manganese homeostasis, PHO84 was identified. The PHO84 gene encodes a high affinity inorganic phosphate transporter, and we find that its disruption results in a manganese-resistant phenotype. Resistance to zinc, cobalt, and copper ions was also demonstrated for pho84Delta yeast. When challenged with high concentrations of metals, pho84Delta yeast have reduced metal ion accumulation, suggesting that resistance is due to reduced uptake of metal ions. Pho84p accounted for virtually all the manganese accumulated under metal surplus conditions, demonstrating that this transporter is the major source of excess manganese accumulation. The manganese taken in via Pho84p is indeed biologically active and can not only cause toxicity but can also be incorporated into manganese-requiring enzymes. Pho84p is essential for activating manganese enzymes in smf2Delta mutants that rely on low affinity manganese transport systems. A role for Pho84p in manganese accumulation was also identified in a standard laboratory growth medium when high affinity manganese uptake is active. Under these conditions, cells lacking both Pho84p and the high affinity Smf1p transporter accumulated low levels of manganese, although there was no major effect on activity of manganese-requiring enzymes. We conclude that Pho84p plays a role in manganese homeostasis predominantly under manganese surplus conditions and appears to be functioning as a low affinity metal transporter.

摘要

在面包酵母酿酒酵母中,高亲和力的锰摄取和细胞内分布涉及Nramp基因家族的两个成员SMF1和SMF2。在寻找参与锰稳态的其他基因时,鉴定出了PHO84。PHO84基因编码一种高亲和力的无机磷酸盐转运蛋白,我们发现其缺失会导致锰抗性表型。对于pho84Delta酵母,还证明了其对锌、钴和铜离子具有抗性。当受到高浓度金属挑战时,pho84Delta酵母的金属离子积累减少,这表明抗性是由于金属离子摄取减少所致。在金属过剩条件下,Pho84p几乎占积累的所有锰,这表明该转运蛋白是过量锰积累的主要来源。通过Pho84p摄取的锰确实具有生物活性,不仅会导致毒性,还可以掺入需要锰的酶中。对于依赖低亲和力锰转运系统的smf2Delta突变体,Pho84p对于激活锰酶至关重要。当高亲和力锰摄取活跃时,在标准实验室生长培养基中也确定了Pho84p在锰积累中的作用。在这些条件下,同时缺乏Pho84p和高亲和力Smf1p转运蛋白的细胞积累的锰水平较低,尽管对需要锰的酶的活性没有重大影响。我们得出结论,Pho84p主要在锰过剩条件下在锰稳态中起作用,并且似乎作为一种低亲和力金属转运蛋白发挥作用。

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