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首页> 外文期刊>Biochemistry >Structure of MMACHC reveals an arginine-rich pocket and a domain-swapped dimer for its B _(12) processing function
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Structure of MMACHC reveals an arginine-rich pocket and a domain-swapped dimer for its B _(12) processing function

机译:MMACHC的结构揭示了富有精氨酸的口袋和其B _(12)处理功能的畴交换二聚体

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摘要

Defects in the MMACHC gene represent the most common disorder of cobalamin (Cbl) metabolism, affecting synthesis of the enzyme cofactors adenosyl-Cbl and methyl-Cbl. The encoded MMACHC protein binds intracellular Cbl derivatives with different upper axial ligands and exhibits flavin mononucleotide (FMN)-dependent decyanase activity toward cyano-Cbl as well as glutathione (GSH)-dependent dealkylase activity toward alkyl-Cbls. We determined the structure of human MMACHC?adenosyl-Cbl complex, revealing a tailor-made nitroreductase scaffold which binds adenosyl-Cbl in a "base-off, five-coordinate" configuration for catalysis. We further identified an arginine-rich pocket close to the Cbl binding site responsible for GSH binding and dealkylation activity. Mutation of these highly conserved arginines, including a replication of the prevalent MMACHC missense mutation, Arg161Gln, disrupts GSH binding and dealkylation. We further showed that two Cbl-binding monomers dimerize to mediate the reciprocal exchange of a conserved "PNRRP" loop from both subunits, serving as a protein cap for the upper axial ligand in trans and required for proper dealkylation activity. Our dimeric structure is supported by solution studies, where dimerization is triggered upon binding its substrate adenosyl-Cbl or cofactor FMN. Together our data provide a structural framework to understanding catalytic function and disease mechanism for this multifunctional enzyme.
机译:MMACHC基因中的缺陷代表了钴胺素(CB1)代谢的最常见的疾病,影响酶辅因子腺苷-CBL和甲基-CBL的合成。编码的MMACHC蛋白与不同上轴向配体的细胞内CBL衍生物结合,并将黄蛋白单核苷酸(FMN) - 依赖性解冻酶活性朝向Cyano-CBL以及谷胱甘肽(GSH)依赖性促使脂肪酶活性朝向烷基-CBLS。我们确定了人MMACHC的结构腺苷酸,呈甲糖基-CBL复合物,揭示了定制的硝化酶支架,其在催化的“截止的五坐标”构型中结合腺苷-CBL。我们进一步鉴定了富含CBL结合位点的精氨酸富袋,其负责GSH结合和脱康化活性。这些高度保守的精氨酸的突变,包括普遍存在的MMACHC畸变突变的复制,arg161gln破坏GSH结合和脂肪化。我们进一步表明,两种CBL结合单体二聚体以介导从两个亚基的保守的“PNRRP”环的往复交换,用作上轴向配体的蛋白质帽,并需要适当的脱淀活性。通过解决方案研究支持我们的二聚体结构,其中在结合其底物腺苷-CBL或辅因子FMN时触发二聚化。我们的数据一起提供了理解这种多功能酶的催化功能和疾病机制的结构框架。

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  • 来源
    《Biochemistry》 |2012年第25期|共8页
  • 作者单位

    Structural Genomics Consortium NIHR Oxford Biomedical Research Unit University of Oxford Oxford United Kingdom;

    Structural Genomics Consortium NIHR Oxford Biomedical Research Unit University of Oxford Oxford United Kingdom;

    Department of Biochemistry and Molecular Biology University of Calgary Calgary Canada;

    Structural Genomics Consortium NIHR Oxford Biomedical Research Unit University of Oxford Oxford United Kingdom;

    Structural Genomics Consortium NIHR Oxford Biomedical Research Unit University of Oxford Oxford United Kingdom;

    Structural Genomics Consortium NIHR Oxford Biomedical Research Unit University of Oxford Oxford United Kingdom;

    Department of Biochemistry and Molecular Biology University of Calgary Calgary Canada;

    Structural Genomics Consortium NIHR Oxford Biomedical Research Unit University of Oxford Oxford United Kingdom;

    Structural Genomics Consortium NIHR Oxford Biomedical Research Unit University of Oxford Oxford United Kingdom;

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