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Phospholipid scramblase 3 controls mitochondrial structure, function, and apoptotic response.

机译:磷脂加扰酶3控制线粒体的结构,功能和凋亡反应。

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Phospholipid scramblase 3 (PLS3) is a newly recognized member of a family of proteins responsible for phospholipid translocation between two lipid compartments. To study PLS3 function in mitochondria, we disrupted its conserved calcium-binding motif yielding an inactive mutant PLS3(F258V). Cells transfected with PLS3(F258V) exhibited reduced proliferative capacity. Mitochondrial analysis revealed that PLS3(F258V)-expressing cells have decreased mitochondrial mass shown by lower cytochrome c and cardiolipin (CL) content, poor mitochondrial respiration, and reduced oxygen consumption and intracellular ATP; whereas wild-type PLS3-transfected cells exhibit increased mitochondrial mass and enhanced respiration. Electron microscopic examination revealed that the mitochondria in PLS3(F258V)-expressing cells have densely packed cristae and are fewer in number and larger than those in control cells. The abnormal mitochondrial metabolism and structure in PLS3(F258V)-expressing cells were associated with decreased sensitivity to UV- and tBid-induced apoptosis and diminished translocation of CL to the mitochondrial outer membrane. In contrast, wild-type PLS3-transfected cells displayed increased sensitivity to apoptosis and enhanced CL translocation. These studies identify PLS3 as a critical regulator of mitochondrial structure and respiration, and CL transport in apoptosis.
机译:磷脂加扰酶3(PLS3)是负责两个脂质区室之间的磷脂易位的蛋白质家族的新成员。若要研究PLS3在线粒体中的功能,我们破坏了其保守的钙结合基序,产生了无活性的突变PLS3(F258V)。用PLS3(F258V)转染的细胞显示出降低的增殖能力。线粒体分析显示,表达PLS3(F258V)的细胞线粒体质量减少,细胞色素c和心磷脂(CL)含量降低,线粒体呼吸不良,耗氧量和细胞内ATP降低。而野生型PLS3转染的细胞表现出增加的线粒体质量和增强的呼吸作用。电子显微镜检查显示,表达PLS3(F258V)的细胞中的线粒体具有紧密堆积的ista,且数量少于对照组细胞中的线粒体。 PLS3(F258V)表达细胞中的线粒体代谢和结构异常与对UV和tBid诱导的细胞凋亡的敏感性降低以及CL向线粒体外膜的转运减少有关。相比之下,野生型PLS3转染的细胞显示出增加的凋亡敏感性和增强的CL易位。这些研究确定PLS3是线粒体结构和呼吸以及细胞凋亡中CL转运的关键调节剂。

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