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新型隐球菌中组成型铁摄取突变的线粒体功能

Mitochondrial functioning of constitutive iron uptake mutations in Cryptococcus neoformans.

作者信息

Jacobson Eric S, Troy Amanda J, Nyhus Karin J

机构信息

Research Service, McGuire Veterans Affairs Medical Center, 1201 Broad Rock Blvd, Richmond, VA 23249, USA.

出版信息

Mycopathologia. 2005 Jan;159(1):1-6. doi: 10.1007/s11046-004-2223-8.

Abstract

Randomly obtained, constitutive plasma membrane ferric reductase/ferrous uptake mutants of Cryptococcus neoformans were mapped to four distinct loci by meiotic analysis. One of those loci, FRR1 , was previously found homologous to MRS3 and MRS4 of Saccharomyces cerevisiae , which determine proteins involved in mitochondrial transport of iron. We were able to complement, clone, sequence and thereby identify two of the three remaining constitutive uptake loci. FRR3 was found to be homologous to ISU1 and ISU2 of S. cerevisiae, which form mitochondrial iron-sulfur complexes; FRR4 was found to be homologous to YFH1, the yeast frataxin homologue, which also participates in iron-sulfur cluster biogenesis. Because of the constitutive iron uptake seen in these mutants, mitochondria appear to have a central role in the cellular iron economy; moreover, as judged by our mutational statistics, the genetic machinery for mitochondrial iron accumulation may be more complex than that of the cytoplasm.

摘要

通过减数分裂分析,将随机获得的新型隐球菌组成型质膜铁还原酶/亚铁摄取突变体定位到四个不同的基因座。其中一个基因座FRR1,先前发现与酿酒酵母的MRS3和MRS4同源,它们决定参与铁线粒体运输的蛋白质。我们能够对其余三个组成型摄取基因座中的两个进行互补、克隆、测序并从而鉴定出来。发现FRR3与酿酒酵母的ISU1和ISU2同源,它们形成线粒体铁硫复合物;发现FRR4与YFH1同源,YFH1是酵母frataxin同源物,也参与铁硫簇生物合成。由于在这些突变体中观察到组成型铁摄取,线粒体似乎在细胞铁代谢中起核心作用;此外,根据我们的突变统计判断,线粒体铁积累的遗传机制可能比细胞质的更复杂。

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