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携带COX10、SCO1或SURF1基因突变的患者成纤维细胞培养物中的细胞色素c氧化酶亚组件。

Cytochrome c oxidase subassemblies in fibroblast cultures from patients carrying mutations in COX10, SCO1, or SURF1.

作者信息

Williams Siôn L, Valnot Isabelle, Rustin Pierre, Taanman Jan-Willem

机构信息

University Department of Clinical Neurosciences, Royal Free and University College Medical School, University College London, London NW3 2PF, United Kingdom.

出版信息

J Biol Chem. 2004 Feb 27;279(9):7462-9. doi: 10.1074/jbc.M309232200. Epub 2003 Nov 7.

Abstract

Cytochrome c oxidase contains two redox-active copper centers (Cu(A) and Cu(B)) and two redox-active heme A moieties. Assembly of the enzyme relies on several assembly factors in addition to the constituent subunits and prosthetic groups. We studied fibroblast cultures from patients carrying mutations in the assembly factors COX10, SCO1, or SURF1. COX10 is involved in heme A biosynthesis. SCO1 is required for formation of the Cu(A) center. The function of SURF1 is unknown. Immunoblot analysis of native gels demonstrated severely decreased levels of holoenzyme in the patient cultures compared with controls. In addition, the blots revealed the presence of five subassemblies: three subassemblies involving the core subunit MTCO1 but apparently no other subunits; a subassembly containing subunits MTCO1, COX4, and COX5A; and a subassembly containing at least subunits MTCO1, MTCO2, MTCO3, COX4, and COX5A. As some of the subassemblies correspond to known assembly intermediates of human cytochrome c oxidase, we think that these subassemblies are probably assembly intermediates that accumulate in patient cells. The MTCO1.COX4.COX5A subassembly was not detected in COX10-deficient cells, which suggests that heme A incorporation into MTCO1 occurs prior to association of MTCO1 with COX4 and COX5A. SCO1-deficient cells contained accumulated levels of the MTCO1.COX4.COX5A subassembly, suggesting that MTCO2 associates with the MTCO1.COX4.COX5A subassembly after the Cu(A) center of MTCO2 is formed. Assembly in SURF1-deficient cells appears to stall at the same stage as in SCO1-deficient cells, pointing to a role for SURF1 in promoting the association of MTCO2 with the MTCO1.COX4.COX5A subassembly.

摘要

细胞色素c氧化酶含有两个具有氧化还原活性的铜中心(Cu(A)和Cu(B))以及两个具有氧化还原活性的血红素A部分。除了组成亚基和辅基外,该酶的组装还依赖于几种组装因子。我们研究了携带组装因子COX10、SCO1或SURF1突变的患者的成纤维细胞培养物。COX10参与血红素A的生物合成。SCO1是Cu(A)中心形成所必需的。SURF1的功能尚不清楚。对天然凝胶的免疫印迹分析表明,与对照相比,患者培养物中全酶水平严重降低。此外,印迹显示存在五个亚组装体:三个亚组装体涉及核心亚基MTCO1,但显然没有其他亚基;一个亚组装体包含亚基MTCO1、COX4和COX5A;以及一个亚组装体至少包含亚基MTCO1、MTCO2、MTCO3、COX4和COX5A。由于一些亚组装体对应于人类细胞色素c氧化酶已知的组装中间体,我们认为这些亚组装体可能是在患者细胞中积累的组装中间体。在COX10缺陷细胞中未检测到MTCO1.COX4.COX5A亚组装体,这表明血红素A掺入MTCO1发生在MTCO1与COX4和COX5A结合之前。SCO1缺陷细胞中MTCO1.COX4.COX5A亚组装体水平积累,表明MTCO2在其Cu(A)中心形成后与MTCO1.COX4.COX5A亚组装体结合。SURF1缺陷细胞中的组装似乎在与SCO1缺陷细胞相同的阶段停滞,这表明SURF1在促进MTCO2与MTCO1.COX4.COX5A亚组装体结合中起作用。

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