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在酿酒酵母中,ISC[校正后]蛋白Isa1和Isa2是生物素合酶铁硫簇功能所必需的,但不是其从头合成所必需的。

The ISC [corrected] proteins Isa1 and Isa2 are required for the function but not for the de novo synthesis of the Fe/S clusters of biotin synthase in Saccharomyces cerevisiae.

作者信息

Mühlenhoff Ulrich, Gerl Mathias J, Flauger Birgit, Pirner Heike M, Balser Sandra, Richhardt Nadine, Lill Roland, Stolz Jürgen

机构信息

Institut für Zytobiologie und Zytopathologie, Philipps-Universität Marburg, Robert-Koch-Strasse 6, 35033 Marburg, Germany.

出版信息

Eukaryot Cell. 2007 Mar;6(3):495-504. doi: 10.1128/EC.00191-06. Epub 2007 Jan 26.

Abstract

The yeast Saccharomyces cerevisiae is able to use some biotin precursors for biotin biosynthesis. Insertion of a sulfur atom into desthiobiotin, the final step in the biosynthetic pathway, is catalyzed by biotin synthase (Bio2). This mitochondrial protein contains two iron-sulfur (Fe/S) clusters that catalyze the reaction and are thought to act as a sulfur donor. To identify new components of biotin metabolism, we performed a genetic screen and found that Isa2, a mitochondrial protein involved in the formation of Fe/S proteins, is necessary for the conversion of desthiobiotin to biotin. Depletion of Isa2 or the related Isa1, however, did not prevent the de novo synthesis of any of the two Fe/S centers of Bio2. In contrast, Fe/S cluster assembly on Bio2 strongly depended on the Isu1 and Isu2 proteins. Both isa mutants contained low levels of Bio2. This phenotype was also found in other mutants impaired in mitochondrial Fe/S protein assembly and in wild-type cells grown under iron limitation. Low Bio2 levels, however, did not cause the inability of isa mutants to utilize desthiobiotin, since this defect was not cured by overexpression of BIO2. Thus, the Isa proteins are crucial for the in vivo function of biotin synthase but not for the de novo synthesis of its Fe/S clusters. Our data demonstrate that the Isa proteins are essential for the catalytic activity of Bio2 in vivo.

摘要

酿酒酵母能够利用一些生物素前体进行生物素的生物合成。生物合成途径的最后一步,即硫原子插入脱硫生物素,是由生物素合酶(Bio2)催化的。这种线粒体蛋白含有两个铁硫(Fe/S)簇,它们催化该反应,并被认为作为硫供体起作用。为了鉴定生物素代谢的新成分,我们进行了遗传筛选,发现Isa2,一种参与Fe/S蛋白形成的线粒体蛋白,是脱硫生物素转化为生物素所必需的。然而,Isa2或相关的Isa1的缺失并没有阻止Bio2的两个Fe/S中心中的任何一个的从头合成。相反,Bio2上的Fe/S簇组装强烈依赖于Isu1和Isu2蛋白。这两个isa突变体都含有低水平的Bio2。在其他线粒体Fe/S蛋白组装受损的突变体和铁限制条件下生长的野生型细胞中也发现了这种表型。然而,低Bio2水平并没有导致isa突变体无法利用脱硫生物素,因为这种缺陷不能通过BIO2的过表达来纠正。因此,Isa蛋白对于生物素合酶的体内功能至关重要,但对于其Fe/S簇的从头合成并非如此。我们的数据表明,Isa蛋白对于Bio2在体内的催化活性至关重要。

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