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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Cardiolipin and mitochondrial cristae organization
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Cardiolipin and mitochondrial cristae organization

机译:心肌脂和线粒体嵴组织

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摘要

A fundamental question in cell biology, under investigation for over six decades, is the structural organization of mitochondrial cristae. Long known to harbor electron transport chain proteins, crista membrane integrity is key to establishment of the proton gradient that drives oxidative phosphorylation. Visualization of cristae morphology by electron microscopy/tomography has provided evidence that cristae are tube-like extensions of the mitochondria] inner membrane (IM) that project into the matrix space. Reconciling ultrastructural data with the lipid composition of the IM provides support for a continuously curved cylindrical bilayer capped by a dome-shaped tip. Strain imposed by the degree of curvature is relieved by an asymmetric distribution of phospholipids in monolayer leaflets that comprise cristae membranes. The signature mitochondrial lipid, cardiolipin (similar to 18% of IM phospholipid mass), and phosphatidylethanolamine (34%) segregate to the negatively curved monolayer leaflet facing the crista lumen while the opposing, positively curved, matrix-facing monolayer leaflet contains predominantly phosphatidylcholine. Associated with cristae are numerous proteins that function in distinctive ways to establish and/or maintain their lipid repertoire and structural integrity. By combining unique lipid components with a set of protein modulators, crista membranes adopt and maintain their characteristic morphological and functional properties. Once established, cristae ultrastructure has a direct impact on oxidative phosphorylation, apoptosis, fusion/fission as well as diseases of compromised energy metabolism. (C) 2017 Elsevier B.V. All rights reserved.
机译:细胞生物学中的一个基本问题在调查中,六十年来,是线粒体嵴的结构组织。长期以来港口电子传输链蛋白,Crista膜完整性是建立氧化磷酸化的质子梯度的关键。电子显微镜/断层扫描的嵴形态的可视化提供了证据,即嵴是线膜(IM)的管状延伸部分,其突出到基质空间中。用IM的脂质组合物调和超微结构数据为由圆顶形尖端覆盖的连续弯曲的圆柱形双层提供支撑。通过曲率的磷脂的不对称分布抑制曲率施加的应变,其包含嵴膜的单层叶中的磷脂。签名线粒体脂质,心磷脂(类似于18%的IM磷脂质量),以及磷脂酰乙醇胺(34%)分离在面向克里斯塔腔的带负弯曲的单层小叶中,而相对的,正面弯曲的矩阵单层叶片主要是磷脂酰胆碱。与嵴相关的是许多蛋白质,其以独特的方式起作用,以建立和/或维持其脂质曲目和结构完整性。通过将独特的脂质组分与一组蛋白质调节剂组合,Crista膜采用并保持其特征形态和功能性。一旦建立,嵴超微结构对氧化磷酸化,细胞凋亡,融合/裂变以及受损能量代谢的疾病具有直接影响。 (c)2017 Elsevier B.v.保留所有权利。

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