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首页> 外文期刊>Biochemistry >Analysis of the Cellular Roles of MOCS3 Identifies a MOCS3-Independent Localization of NFS1 at the Tips of the Centrosome
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Analysis of the Cellular Roles of MOCS3 Identifies a MOCS3-Independent Localization of NFS1 at the Tips of the Centrosome

机译:MOCS3细胞作用的分析识别COCS3无关的NFS1在中心组的尖端

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摘要

The deficiency of the molybdenum cofactor (Moco) is an autosomal recessive disease, which leads to the loss of activity of all molybdoenzymes in humans with sulfite oxidase being the essential protein. Moco deficiency generally results in death in early childhood. Moco is a sulfur-containing cofactor synthesized in the cytosol with the sulfur being provided by a sulfur relay system composed of the L-cysteine desulfurase NFS1, MOCS3, and MOCS2A. Human MOCS3 is a dual-function protein that was shown to play an important role in Moco biosynthesis and in the mcm(5)s(2) U thio modifications of nucleosides in cytosolic tRNAs for Lys, Gln, and Glu. In this study, we constructed a homozygous MOCS3 knockout in HEK293T cells using the CRISPR/Cas9 system. The effects caused by the absence of MOCS3 were analyzed in detail. We show that sulfite oxidase activity was almost completely abolished, on the basis of the absence of Moco in these cells. In addition, mcm(5)s(2)U thio-modified tRNAs were not detectable. Because the L-cysteine desulfurase NFS1 was shown to act as a sulfur donor for MOCS3 in the cytosol, we additionally investigated the impact of a MOCS3 knockout on the cellular localization of NFS1. By different methods, we identified a MOCS3-independent novel localization of NFS1 at the centrosome.
机译:钼辅因子(MOCO)的缺乏是一种常染色体隐性疾病,导致人类所有钼醛的活性丧失,亚硫酸盐氧化酶是必需蛋白质。 Moco缺乏通常会导致幼儿早期死亡。 MOCO是在含硫醇中合成的含硫辅助因子,其中由由L-半胱氨酸脱硫酶NFS1,MOCS 3和MOCS2a组成的硫继电器系统提供。人MOCS3是一种双函数蛋白,显示在MoCo生物合成中起重要作用,并且在MCM(5)S(2)U硫醚在胞质溶质TrNA中的核苷,用于Lys,Gln和Glu。在这项研究中,我们使用CRISPR / CAS9系统在HEK293T细胞中构建了纯合MOCS3敲除。详细分析由不存在MOCS3引起的效果。我们表明,基于这些细胞中没有MOCO,亚硫酸盐氧化酶活性几乎完全被废除。此外,MCM(5)S(2)u硫化的TRNA是不可检测的。由于显示L-半胱氨酸脱硫酶NFS1作为MOCS3中的MOCS3中的硫供体,我们还在研究MOCS3敲除对NFS1细胞定位的影响。通过不同的方法,我们确定了在中心组上的NFS1的MOCS3独立的新颖性。

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  • 来源
    《Biochemistry》 |2019年第13期|共13页
  • 作者单位

    Univ Potsdam Inst Biochem &

    Biol Dept Mol Enzymol D-14476 Potsdam Germany;

    Johannes Gutenberg Univ Mainz Inst Pharm &

    Biochem D-55128 Mainz Germany;

    Univ Potsdam Inst Biochem &

    Biol Dept Mol Enzymol D-14476 Potsdam Germany;

    Univ Potsdam Inst Biochem &

    Biol Dept Mol Enzymol D-14476 Potsdam Germany;

    Johannes Gutenberg Univ Mainz Inst Pharm &

    Biochem D-55128 Mainz Germany;

    Univ Potsdam Inst Biochem &

    Biol Dept Cell Biol D-14476 Potsdam Germany;

    Univ Potsdam Inst Biochem &

    Biol Dept Mol Enzymol D-14476 Potsdam Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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