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Cardiolipin-mediated mitochondrial dynamics and stress response in Arabidopsis.

机译:拟南芥中心磷脂介导的线粒体动力学和应激反应。

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摘要

Mitochondria are essential and dynamic organelles in eukaryotes. Cardiolipin (CL) is a key phospholipid in mitochondrial membranes, playing important roles in maintaining the functional integrity and dynamics of mitochondria in animals and yeasts. However, CL's role in plants is just beginning to be elucidated. In this study, we used Arabidopsis thaliana to examine the subcellular distribution of CL and CARDIOLIPIN SYNTHASE (CLS) and analyzed loss-of-function cls mutants for defects in mitochondrial morphogenesis and stress response. We show that CL localizes to mitochondria and is enriched at specific domains, and CLS targets to the inner membrane of mitochondria with its C terminus in the intermembrane space. Furthermore, cls mutants exhibit significantly impaired growth as well as altered structural integrity and morphogenesis of mitochondria. In contrast to animals and yeasts, in which CL's effect on mitochondrial fusion is more profound, Arabidopsis CL plays a dominant role in mitochondrial fission and exerts this function, at least in part, through stabilizing the protein complex of the major mitochondrial fission factor, DYNAMIN-RELATED PROTEIN3. CL also plays a role in plant responses to heat and extended darkness, stresses that induce programmed cell death. Our study has uncovered conserved and plant-specific aspects of CL biology in mitochondrial dynamics and the organism response to environmental stresses.
机译:线粒体是真核生物中必不可少的动态细胞器。心磷脂(CL)是线粒体膜中的关键磷脂,在维持动物和酵母中线粒体的功能完整性和动力学中起着重要作用。但是,CL在植物中的作用才刚刚被阐明。在这项研究中,我们使用拟南芥检查了CL和CARDIOLIPIN合酶(CLS)的亚细胞分布,并分析了功能丧失的cls突变体在线粒体形态发生和应激反应中的缺陷。我们显示CL定位于线粒体,并在特定域富集,CLS靶向线粒体内膜,其C末端位于膜间空间。此外,cls突变体表现出明显受损的生长以及线粒体的结构完整性和形态发生改变。与动物和酵母菌相比,CL对线粒体融合的影响更为深远,拟南芥属CL在线粒体分裂中起着主导作用,并且至少部分地通过稳定主要线粒体分裂因子DYNAMIN的蛋白质复合物来发挥这种功能。相关蛋白质3。 CL还在植物对热和黑暗的反应中发挥作用,逆境诱导细胞程序性死亡。我们的研究发现线粒体动力学和生物体对环境胁迫的反应中,CL生物学的保守和植物特有方面。

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