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红杆菌属中脂质的联合遗传和代谢操作揭示了完全活性细胞色素 c 氧化酶中的非磷脂取代。

Combined genetic and metabolic manipulation of lipids in Rhodobacter sphaeroides reveals non-phospholipid substitutions in fully active cytochrome c oxidase.

机构信息

Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, Michigan 48824, United States.

出版信息

Biochemistry. 2011 May 17;50(19):3891-902. doi: 10.1021/bi1017039. Epub 2011 Apr 22.

Abstract

A specific requirement for lipids, particularly cardiolipin (CL), in cytochrome c oxidase (CcO) has been reported in many previous studies using mainly in vitro lipid removal approaches in mammalian systems. Our accompanying paper shows that CcO produced in markedly CL-depleted Rhodobacter sphaeroides displays wild-type properties in all respects, likely allowed by quantitative substitution with other negatively charged lipids. To further examine the structural basis for the lipid requirements of R. sphaeroides CcO and the extent of interchangeability between lipids, we employed a metabolic approach to enhance the alteration of the lipid profiles of the CcO-expressing strains of R. sphaeroides in vivo using a phosphate-limiting growth medium in addition to the CL-deficient mutation. Strikingly, the purified CcO produced under these conditions still maintained wild-type function and characteristics, in spite of even greater depletion of cardiolipin compared to that of the CL-deficient mutant alone (undetectable by MS) and drastically altered profiles of all the phospholipids and non-phospholipids. The lipids in the membrane and in the purified CcO were identified and quantified by ESI and MALDI mass spectrometry and tandem mass spectrometry. Comparison between the molecular structures of those lipids that showed major changes provides new insight into the structural rationale for the flexible lipid requirements of CcO from R. sphaeroides and reveals a more comprehensive interchangeability network between different phospholipids and non-phospholipids.

摘要

先前的许多研究主要采用哺乳动物体系中的体外去脂方法,报告了细胞色素 c 氧化酶(CcO)对脂质,特别是心磷脂(CL)的特殊需求。我们的相关论文表明,在 CL 严重耗竭的红假单胞菌中产生的 CcO 在各方面均具有野生型特性,这可能是由其他带负电荷的脂质定量替代所允许的。为了进一步研究 CL 对 R. sphaeroides CcO 结构的要求以及脂质之间可互换性的程度,我们采用代谢方法,在 CL 缺陷突变的基础上,通过限制磷酸盐生长培养基进一步增强了 R. sphaeroides 中 CcO 表达菌株的脂质谱的改变。引人注目的是,尽管与单独的 CL 缺陷突变体相比,心磷脂的耗竭程度更高(MS 检测不到),并且所有磷脂和非磷脂的图谱都发生了剧烈变化,但在这些条件下纯化的 CcO 仍保持野生型功能和特性。通过 ESI 和 MALDI 质谱和串联质谱鉴定和定量了膜中和纯化的 CcO 中的脂质。对显示出主要变化的那些脂质的分子结构进行比较,为 R. sphaeroides 的 CcO 灵活的脂质需求的结构原理提供了新的见解,并揭示了不同磷脂和非磷脂之间更全面的可互换性网络。

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