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线粒体膜间隙侧的脱酰化作用调节心磷脂重塑。

Deacylation on the matrix side of the mitochondrial inner membrane regulates cardiolipin remodeling.

机构信息

Department of Physiology, Johns Hopkins School of Medicine, Baltimore, MD 21205-2185, USA.

出版信息

Mol Biol Cell. 2013 Jun;24(12):2008-20. doi: 10.1091/mbc.E13-03-0121. Epub 2013 May 1.

Abstract

The mitochondrial-specific lipid cardiolipin (CL) is required for numerous processes therein. After its synthesis on the matrix-facing leaflet of the inner membrane (IM), CL undergoes acyl chain remodeling to achieve its final form. In yeast, this process is completed by the transacylase tafazzin, which associates with intermembrane space (IMS)-facing membrane leaflets. Mutations in TAZ1 result in the X-linked cardiomyopathy Barth syndrome. Amazingly, despite this clear pathophysiological association, the physiological importance of CL remodeling is unresolved. In this paper, we show that the lipase initiating CL remodeling, Cld1p, is associated with the matrix-facing leaflet of the mitochondrial IM. Thus monolysocardiolipin generated by Cld1p must be transported to IMS-facing membrane leaflets to gain access to tafazzin, identifying a previously unknown step required for CL remodeling. Additionally, we show that Cld1p is the major site of regulation in CL remodeling; and that, like CL biosynthesis, CL remodeling is augmented in growth conditions requiring mitochondrially produced energy. However, unlike CL biosynthesis, dissipation of the mitochondrial membrane potential stimulates CL remodeling, identifying a novel feedback mechanism linking CL remodeling to oxidative phosphorylation capacity.

摘要

线粒体特异性脂质心磷脂 (CL) 是许多过程所必需的。在其在内膜 (IM) 的面向基质的小叶上合成后,CL 经历酰基链重塑以达到其最终形式。在酵母中,这个过程由跨酰基转移酶 tafazzin 完成,它与膜间空间 (IMS) 面向膜小叶结合。TAZ1 突变导致 X 连锁的心肌病巴德综合征。令人惊讶的是,尽管存在这种明确的病理生理学关联,但 CL 重塑的生理重要性仍未得到解决。在本文中,我们表明起始 CL 重塑的脂肪酶 Cld1p 与线粒体 IM 的面向基质的小叶结合。因此,由 Cld1p 产生的单心磷脂必须转运到 IMS 面向膜小叶,以获得 tafazzin,从而确定了 CL 重塑所需的先前未知步骤。此外,我们表明 Cld1p 是 CL 重塑的主要调节部位;并且,与 CL 生物合成一样,在需要线粒体产生能量的生长条件下,CL 重塑得到增强。然而,与 CL 生物合成不同,线粒体膜电位的耗散刺激 CL 重塑,确定了一种将 CL 重塑与氧化磷酸化能力联系起来的新反馈机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd10/3681703/638809e893f9/2008fig1.jpg

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