蛋氨酸亚砜还原酶A在线粒体ATP合成和视网膜色素上皮细胞抗氧化剂中的独立作用。

Free radical biology & medicine Pub Date : 2013-12-01 Epub Date: 2013-10-10 DOI:10.1016/j.freeradbiomed.2013.10.006
Ying Dun, Jade Vargas, Nathan Brot, Silvia C Finnemann
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引用次数: 17

摘要

抗氧化酶甲硫氨酸亚砜还原酶A (MsrA)在视网膜色素上皮(RPE)中高度表达,RPE是邻近光感受器的支持组织。MsrA蛋白水平与培养RPE对实验性氧化应激的敏感性相关。为了研究MsrA是否以及如何在不受氧化应激影响的情况下影响RPE功能,我们测试了MsrA急性沉默或过表达对光感受器外段片段(POS)吞噬的影响,POS是RPE的一项日常功能,对视力至关重要。内源性MsrA定位于培养大鼠RPE的线粒体和细胞质。与对照细胞相比,RPE细胞表达更高或更低水平的MsrA,没有细胞死亡的迹象,但POS结合和吞噬分别增加或减少。这些改变的MsrA蛋白浓度对吞噬的影响与氧化应激水平无关。然而,当线粒体呼吸受到抑制时,改变MsrA的表达对吞噬没有影响。此外,在使用线粒体氧化磷酸化合成ATP的RPE细胞中,ATP含量与MsrA蛋白水平直接相关,而在仅依赖糖酵解的RPE细胞中则没有。过表达MsrA足以特异性提高呼吸链复合体IV的活性,而复合体II的活性和线粒体含量不受影响。因此,MsrA可能通过增加复合物IV的活性来促进ATP的合成。MsrA对能量代谢的贡献独立于其保护氧化应激升高的功能,但有助于RPE细胞常规但重要的光感受器支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Independent roles of methionine sulfoxide reductase A in mitochondrial ATP synthesis and as antioxidant in retinal pigment epithelial cells.

Independent roles of methionine sulfoxide reductase A in mitochondrial ATP synthesis and as antioxidant in retinal pigment epithelial cells.

Independent roles of methionine sulfoxide reductase A in mitochondrial ATP synthesis and as antioxidant in retinal pigment epithelial cells.

Independent roles of methionine sulfoxide reductase A in mitochondrial ATP synthesis and as antioxidant in retinal pigment epithelial cells.

The antioxidant enzyme methionine sulfoxide reductase A (MsrA) is highly expressed in the retinal pigment epithelium (RPE), a support tissue for neighboring photoreceptors. MsrA protein levels correlate with sensitivity of RPE in culture to experimental oxidative stress. To investigate whether and how MsrA affects RPE functionality regardless of oxidative stress, we tested the effects of acute silencing or overexpression of MsrA on the phagocytosis of photoreceptor outer segment fragments (POS), a demanding, daily function of the RPE that is essential for vision. Endogenous MsrA localized to mitochondria and cytosol of rat RPE in culture. RPE cells manipulated to express higher or lower levels of MsrA than control cells showed no signs of cell death but increased or decreased, respectively, POS binding as well as engulfment. These effects of altered MsrA protein concentration on phagocytosis were independent of the levels of oxidative stress. However, altering MsrA expression had no effect on phagocytosis when mitochondrial respiration was inhibited. Furthermore, ATP content directly correlated with MsrA protein levels in RPE cells that used mitochondrial oxidative phosphorylation for ATP synthesis but not in RPE cells that relied on glycolysis alone. Overexpressing MsrA was sufficient to increase specifically the activity of complex IV of the respiratory chain, whereas activity of complex II and mitochondrial content were unaffected. Thus, MsrA probably enhances ATP synthesis by increasing complex IV activity. Such contribution of MsrA to energy metabolism is independent of its function in protection from elevated oxidative stress but contributes to routine but vital photoreceptor support by RPE cells.

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