首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Oxidatively stressed mitochondria-mimicking membranes: A molecular insight into their organization during apoptosis
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Oxidatively stressed mitochondria-mimicking membranes: A molecular insight into their organization during apoptosis

机译:氧化强调的线粒体模拟膜:在细胞凋亡中的分子洞察组织

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Mitochondria are crucially involved in the removal of eukaryotic cells by the intrinsic pathway of programmed cell death (apoptosis). The mitochondrion's outer membrane (MOM) is the platform where this pathway takes place. Upon oxidative stress triggering apoptotic action, the MOM undergoes permeabilization and release of cytochrome c, ultimately causing cell death. This membrane perforation is regulated not only by opposing members of the Bcl-2 protein family meeting at the MOM but also actively the membrane itself. Upon oxidative damage, the membrane undergoes severe reorganization causing an increase in cell death-causing apoptotic Bcl-2 proteins. To understand the active role of MOM, we provided a detailed molecular view of its structural and dynamic reorganization upon oxidative stress by solid-state C-13 MAS NMR (magic angle spinning nuclear magnetic resonance) accompanied by calorimetric studies. By focusing on MOM-like vesicles doped with oxidized lipid species, direct polarization C-13 MAS NMR provided a quantitative overview and identification of all lipid moieties across the membrane. H-1-C-1(3) cross polarization and insensitive nuclei enhanced by polarization transfer MAS NMR generated a dynamic - mobile versus restricted - membrane profile. Oxidized phospholipids significantly perturb the structural membrane organization and increase membrane dynamics. These perturbations are not uniformly distributed as the hydrophobic core is reflecting the melting of lipid chains and increase in molecular disorder directly, whereas the interface and headgroup region undergo complex dynamical changes, reflecting increased intra-molecular flexibility of these moieties. These changes are potentially crucial in augmenting pro-apoptotic action of proteins like Bax.
机译:线粒体至关重要地参与通过编程细胞死亡(细胞凋亡)的内在途径去除真核细胞。线粒体的外膜(妈妈)是该途径发生的平台。在氧化应激引发凋亡作用时,乳头经历透化和释放细胞色素C,最终导致细胞死亡。该膜穿孔不仅由妈妈的Bcl-2蛋白家庭会议的对立构件来调节,而且同时也主动膜本身。在氧化损伤时,膜经历严重的重组,导致细胞死亡引起的凋亡Bcl-2蛋白增加。为了了解MOM的积极作用,我们提供了通过固态C-13MAS NMR(Magic Anges纺丝核磁共振)的氧化应激的结构和动态重组的详细分子视图。通过专注于掺杂有氧化脂质物种的母体样囊泡,直接偏振C-13mas NMR提供了膜上所有脂质部分的定量概述和鉴定。 H-1-C-1(3)通过偏振转移Mas NMR增强的交叉偏振和不敏感核产生动态 - 移动与限制 - 膜谱。氧化磷脂显着扰扰了结构膜组织和增加膜动力学。由于疏水芯反映了脂链的熔化并直接增加了分子核算,而这些扰动不均匀分布,而界面和头组区域经历复杂的动态变化,反映了这些部分的分子内柔韧性增加。这些变化可能在增强蛋白酶蛋白酶的促凋亡作用中可能是至关重要的。

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