Moe Agnes, Ädelroth Pia, Brzezinski Peter, Näsvik Öjemyr Linda
Department of Biochemistry and Biophysics, The Arrhenius Laboratories for Natural Sciences, Stockholm University, SE-106 91, Stockholm, Sweden.
Xbrane Biopharma AB, Retzius väg 8, SE-171 65, Solna, Sweden.
Commun Chem. 2023 Feb 16;6(1):32. doi: 10.1038/s42004-023-00827-3.
Fission yeast Schizosaccharomyces pombe serves as model organism for studying higher eukaryotes. We combined the use of cryo-EM and spectroscopy to investigate the structure and function of affinity purified respiratory complex IV (CIV) from S. pombe. The reaction sequence of the reduced enzyme with O proceeds over a time scale of µs-ms, similar to that of the mammalian CIV. The cryo-EM structure of CIV revealed eleven subunits as well as a bound hypoxia-induced gene 1 (Hig1) domain of respiratory supercomplex factor 2 (Rcf2). These results suggest that binding of Rcf2 does not require the presence of a CIII-CIV supercomplex, i.e. Rcf2 is a component of CIV. An AlphaFold-Multimer model suggests that the Hig1 domains of both Rcf1 and Rcf2 bind at the same site of CIV suggesting that their binding is mutually exclusive. Furthermore, the differential functional effect of Rcf1 or Rcf2 is presumably caused by interactions of CIV with their different non-Hig1 domain parts.
裂殖酵母粟酒裂殖酵母是研究高等真核生物的模式生物。我们结合使用冷冻电镜和光谱学来研究从粟酒裂殖酵母中亲和纯化得到的呼吸复合物IV(CIV)的结构和功能。还原态酶与O的反应序列在微秒至毫秒的时间尺度上进行,与哺乳动物的CIV相似。CIV的冷冻电镜结构揭示了11个亚基以及呼吸超复合物因子2(Rcf2)的一个结合的缺氧诱导基因1(Hig1)结构域。这些结果表明Rcf2的结合不需要CIII-CIV超复合物的存在,即Rcf2是CIV的一个组分。一个AlphaFold-Multimer模型表明Rcf1和Rcf2的Hig1结构域在CIV的同一位点结合,这表明它们的结合是相互排斥的。此外,Rcf1或Rcf2的不同功能效应可能是由CIV与其不同的非Hig1结构域部分的相互作用引起的。