多铜氧化酶
生物
突变体
互补
铁质
生物化学
基因
野生型
酿酒酵母
运输机
氧化酶试验
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分子生物学
肽序列
酶
化学
有机化学
漆酶
作者
Candice C. Askwith,David J. Eide,Anthony Van Ho,Philip S. Bernard,Liangtao Li,Sandra Davis‐Kaplan,David M. Sipe,Jerry Kaplan
出处
期刊:Cell
[Elsevier]
日期:1994-01-01
卷期号:76 (2): 403-410
被引量:634
标识
DOI:10.1016/0092-8674(94)90346-8
摘要
S. cerevisiae accumulate iron by a process requiring a ferrireductase and a ferrous transporter. We have isolated a mutant, fet3, defective for high affinity Fe(II) uptake. The wild-type FET3 gene was isolated by complementation of the mutant defect. Sequence analysis of the gene revealed the presence of an open reading frame coding for a protein with strong similarity to the family of blue multicopper oxidoreductases. Consistent with the role of copper in iron transport, growth of wild-type cells in copper-deficient media resulted in decreased ferrous iron transport. Addition of copper, but not other transition metals (manganese or zinc), to the assay media resulted in the recovery of Fe(II) transporter activity. We suggest that the catalytic activity of the Fet3 protein is required for cellular iron accumulation.
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