Pecina Petr, Capková Markéta, Chowdhury Subir K R, Drahota Zdenek, Dubot Audrey, Vojtísková Alena, Hansíková Hana, Houst'ková Hana, Zeman Jirí, Godinot Catherine, Houstek Josef
Institute of Physiology and Centre for Integrated Genomics, Academy of Sciences of the Czech Republic, Prague, Czech Republic.
Biochim Biophys Acta. 2003 Sep 1;1639(1):53-63. doi: 10.1016/s0925-4439(03)00127-3.
Subacute necrotising encephalomyopathy (Leigh syndrome) due to cytochrome c oxidase (COX) deficiency is often caused by mutations in the SURF1 gene, encoding the Surf1 protein essential for COX assembly. We have investigated five patients with different SURF1 mutations resulting in the absence of Surf1 protein. All of them presented with severe and generalised COX defect. Immunoelectrophoretic analysis of cultured fibroblasts revealed 85% decrease of the normal-size COX complexes and significant accumulation of incomplete COX assemblies of 90-120 kDa. Spectrophotometric assay of COX activity showed a 70-90% decrease in lauryl maltoside (LM)-solubilised fibroblasts. In contrast, oxygen consumption analysis in whole cells revealed only a 13-31% decrease of COX activity, which was completely inhibited by detergent in patient cells but not in controls. In patient fibroblasts ADP-stimulated respiration was 50% decreased and cytofluorometry showed a significant decrease of mitochondrial membrane potential DeltaPsi(m) in state 4, as well as a 2.4-fold higher sensitivity of DeltaPsi(m) to uncoupler. We conclude that the absence of the Surf1 protein leads to the formation of incomplete COX complexes, which in situ maintain rather high electron-transport activity, while their H(+)-pumping is impaired. Enzyme inactivation by the detergent in patient cells indicates instability of incomplete COX assemblies.
由于细胞色素c氧化酶(COX)缺乏导致的亚急性坏死性脑肌病(Leigh综合征)通常由SURF1基因突变引起,该基因编码COX组装所必需的Surf1蛋白。我们研究了五名具有不同SURF1突变导致Surf1蛋白缺失的患者。他们均表现出严重且全身性的COX缺陷。对培养的成纤维细胞进行免疫电泳分析显示,正常大小的COX复合物减少了85%,并且90 - 120 kDa的不完全COX组装体大量积累。对COX活性进行分光光度测定表明,月桂基麦芽糖苷(LM)溶解的成纤维细胞中COX活性降低了70 - 90%。相比之下,全细胞中的氧消耗分析显示COX活性仅降低了13 - 31%,在患者细胞中去污剂可完全抑制其活性,而在对照细胞中则不然。在患者成纤维细胞中,ADP刺激的呼吸作用降低了50%,细胞荧光测定显示状态4下线粒体膜电位ΔΨ(m)显著降低,并且ΔΨ(m)对解偶联剂的敏感性高2.4倍。我们得出结论,Surf1蛋白的缺失导致不完全COX复合物的形成,这些复合物在原位保持相当高的电子传递活性,但其H⁺泵功能受损。患者细胞中去污剂导致的酶失活表明不完全COX组装体不稳定。