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核 DNA 编码亚基组装到线粒体复合物 IV 中,并在患者线粒体中优先整合到超复合物形式中。

Assembly of nuclear DNA-encoded subunits into mitochondrial complex IV, and their preferential integration into supercomplex forms in patient mitochondria.

机构信息

Department of Biochemistry, La Trobe University, Melbourne, Australia.

出版信息

FEBS J. 2009 Nov;276(22):6701-13. doi: 10.1111/j.1742-4658.2009.07384.x. Epub 2009 Oct 16.

Abstract

Complex IV is the terminal enzyme of the mitochondrial respiratory chain. In humans, biogenesis of complex IV involves the coordinated assembly of 13 subunits encoded by both mitochondrial and nuclear genomes. The early stages of complex IV assembly involving mitochondrial DNA-encoded subunits CO1 and CO2 have been well studied. However, the latter stages, during which many of the nuclear DNA-encoded subunits are incorporated, are less well understood. Using in vitro import and assembly assays, we found that subunits Cox6a, Cox6b and Cox7a assembled into pre-existing complex IV, while Cox4-1 and Cox6c subunits assembled into subcomplexes that may represent rate-limiting intermediates. We also found that Cox6a and Cox7a are incorporated into a novel intermediate complex of approximately 250 kDa, and that transition of subunits from this complex to the mature holoenzyme had stalled in the mitochondria of patients with isolated complex IV deficiency. A number of complex IV subunits were also found to integrate into supercomplexes containing combinations of complex I, dimeric complex III and complex IV. Subunit assembly into these supercomplexes was also observed in mitochondria of patients in whom monomeric complex IV was selectively reduced. We conclude that newly imported nuclear DNA-encoded subunits can integrate into the complex IV holoenzyme and supercomplex forms by associating with pre-existing subunits and intermediate assembly complexes.

摘要

复合物 IV 是线粒体呼吸链的末端酶。在人类中,复合物 IV 的生物发生涉及线粒体和核基因组编码的 13 个亚基的协调组装。复合物 IV 组装的早期阶段涉及线粒体 DNA 编码的亚基 CO1 和 CO2,已经得到了很好的研究。然而,后者阶段,即许多核 DNA 编码的亚基被掺入的阶段,了解较少。使用体外导入和组装测定,我们发现 Cox6a、Cox6b 和 Cox7a 亚基组装到预先存在的复合物 IV 中,而 Cox4-1 和 Cox6c 亚基组装成可能代表限速中间产物的亚基。我们还发现 Cox6a 和 Cox7a 被掺入到一个大约 250 kDa 的新的中间复合物中,并且这些亚基从该复合物向成熟的全酶的转移在患有孤立复合物 IV 缺陷的患者的线粒体中停滞不前。一些复合物 IV 亚基也被发现整合到含有复合物 I、二聚体复合物 III 和复合物 IV 的组合的超复合物中。在单体复合物 IV 被选择性减少的患者的线粒体中也观察到这些超复合物中亚基的组装。我们得出结论,新导入的核 DNA 编码的亚基可以通过与预先存在的亚基和中间组装复合物结合,整合到复合物 IV 全酶和超复合物形式中。

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