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OPA1 与线粒体内膜融合中心的 cardiolipin 之间的关系。

Relationship between OPA1 and cardiolipin in mitochondrial inner-membrane fusion.

机构信息

Department of Protein Biochemistry, Institute of Life Science, Kurume University, Japan.

Department of Protein Biochemistry, Institute of Life Science, Kurume University, Japan.

出版信息

Biochim Biophys Acta Bioenerg. 2018 Sep;1859(9):951-957. doi: 10.1016/j.bbabio.2018.05.016. Epub 2018 May 28.

Abstract

Mitochondria are highly dynamic organelles that undergo frequent fusion and fission. The large GTPase optic atrophy 1 (OPA1) is identified as a core component of inner membrane (IM) fusion. OPA1 exists as the membrane-anchored L-OPA1 and the proteolytically cleavage soluble S-OPA1. Recently, we showed that OPA1 and mitochondria-localized lipid cardiolipin (CL) cooperate in heterotypic IM fusion [Ban et al., Nat. Cell Biol. 19 (2017) 856-863]. We reconstituted an in vitro membrane fusion reaction using purified human L-OPA1 and S-OPA1 expressed in silkworm and found that L-OPA1 on one side of the membrane and CL on the other side were sufficient for mitochondrial fusion. L-OPA1 is the major fusion-prone factor in heterotypic fusion. However, the role of S-OPA1 remains unknown as S-OPA1 promoted L-OPA1-dependent heterotypic membrane fusion and homotypic CL-containing membrane fusion, but S-OPA1 alone was not sufficient for heterotypic membrane fusion. L-OPA1- and CL-mediated heterotypic mitochondrial fusion was confirmed in living cells, but tafazzin (Taz1), the causal gene product of Barth syndrome, was not essential for mitochondrial fusion. Taz1-dependent CL maturation might have other roles in the remodeling of mitochondrial DNA nucleoids.

摘要

线粒体是高度动态的细胞器,经常发生融合和裂变。大型 GTPase 视神经萎缩 1(OPA1)被鉴定为内膜(IM)融合的核心组成部分。OPA1 存在于膜锚定的 L-OPA1 和蛋白水解切割的可溶性 S-OPA1 中。最近,我们表明 OPA1 和定位于线粒体的脂质心磷脂(CL)在异型 IM 融合中合作[Ban 等人,Nat. Cell Biol. 19(2017)856-863]。我们使用在蚕中表达的纯化的人 L-OPA1 和 S-OPA1 重新构建了体外膜融合反应,发现膜一侧的 L-OPA1 和另一侧的 CL 足以进行线粒体融合。L-OPA1 是异型融合中的主要融合倾向因子。然而,S-OPA1 的作用仍然未知,因为 S-OPA1 促进了 L-OPA1 依赖性异型膜融合和同源 CL 包含的膜融合,但 S-OPA1 本身不足以进行异型膜融合。在活细胞中证实了 L-OPA1 和 CL 介导的异型线粒体融合,但导致 Barth 综合征的因果基因突变产物 tafazzin(Taz1)对于线粒体融合并非必不可少。Taz1 依赖性 CL 成熟可能在重塑线粒体 DNA 核小体方面具有其他作用。

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