Liu X F, Culotta V C
Department of Environmental Health Sciences, Johns Hopkins University School of Public Health, Baltimore, MD, 21205, USA.
J Mol Biol. 1999 Jun 18;289(4):885-91. doi: 10.1006/jmbi.1999.2815.
We have recently shown that a member of the Nramp family of metal transporters, Saccharomyces cerevisiae Smf1p, is tightly regulated at the level of protein stability and protein sorting. Under metal replete conditions, Smf1p is targeted to the vacuole for degradation in a manner dependent on the S. cerevisiaeBSD2 gene product, but under metal starvation conditions, Smf1p accumulates at the cell surface. Here, we have addressed whether Smf1p activity may be necessary for its regulation by metal ions and Bsd2p. Well conserved residues within transmembrane domain 4 and the transport signature sequence of Smf1p were mutagenized. We identified two mutants, G190A and G424A, which destroyed Smf1p activity as monitored by complementation of a smf1 mutation. Notably, these mutations also abolished control by metal ions and Bsd2p, suggesting that Smf1p metal transport function may be necessary for its regulation. Two additional mutants isolated (Q419A and E423A) exhibited wild-type complementation activity and were properly targeted for vacuolar degradation in a Bsd2-dependent manner. However, these mutants failed to re-distribute to the plasma membrane under conditions of metal starvation. A model is proposed herein describing the probable role of Smf1 protein conformation in directing its movement to the vacuole versus cell surface in response to changes in metal ion availability.
我们最近发现,金属转运蛋白Nramp家族的成员——酿酒酵母Smf1p,在蛋白质稳定性和蛋白质分选水平上受到严格调控。在金属充足的条件下,Smf1p以依赖酿酒酵母BSD2基因产物的方式被靶向液泡进行降解,但在金属饥饿条件下,Smf1p会在细胞表面积累。在此,我们探讨了Smf1p的活性对于其受金属离子和Bsd2p调控是否必要。对Smf1p跨膜结构域4内以及转运特征序列中保守性良好的残基进行了诱变。我们鉴定出两个突变体G190A和G424A,通过对smf1突变的互补作用监测发现,它们破坏了Smf1p的活性。值得注意的是,这些突变也消除了金属离子和Bsd2p的调控作用,这表明Smf1p的金属转运功能可能是其调控所必需的。另外分离出的两个突变体(Q419A和E423A)表现出野生型互补活性,并以依赖Bsd2的方式被正确靶向液泡降解。然而,在金属饥饿条件下,这些突变体无法重新分布到质膜上。本文提出了一个模型,描述了Smf1蛋白构象在响应金属离子可用性变化时指导其向液泡与细胞表面移动中的可能作用。