过表达PLP转基因大鼠的内质网应激:灰质少突胶质细胞比白质少突胶质细胞更脆弱

J. Bauer, M. Bradl, M. Klein, M. Leisser, T. Deckwerth, H. Wekerle, H. Lassmann
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引用次数: 76

摘要

有关蛋白质从少突胶质细胞体转运到髓鞘的研究揭示了不同转运途径的存在。蛋白质脂质蛋白(PLP)在粗内质网(ER)合成,然后通过高尔基体加工并运输到髓鞘膜。另一方面,髓鞘碱性蛋白(MBP)在细胞过程的末端局部合成,其信使RNA在游离核糖体上翻译。本研究表明,在过表达PLP的大鼠中,PLP从细胞体到过程的运输受损会干扰其他膜蛋白的易位,如髓鞘相关糖蛋白(MAG)和髓鞘少突胶质细胞糖蛋白(MOG),但不会干扰外周翻译的MBP。此外,它还阻碍非髓磷脂蛋白的转运,例如淀粉样前体蛋白(APP)。在超微结构水平上,代谢紊乱的少突胶质细胞的内质网显示池池极度肿胀,免疫组织化学显示内质网伴侣分子BiP/GRP78和内质网折叠酶蛋白二硫异构酶(PDI)的强烈表达。这些特征表明,这些只在脊髓灰质区域发现的少突胶质细胞在遭受内质网应激时启动了未折叠蛋白反应。其中一些受到干扰的少突胶质细胞出现程序性细胞死亡。这些结果表明,灰质少突胶质细胞与白质少突胶质细胞通过未折叠的蛋白质反应来稳定代谢紊乱的能力不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Endoplasmic Reticulum Stress in PLP‐Overexpressing Transgenic Rats: Gray Matter Oligodendrocytes Are More Vulnerable than White Matter Oligodendrocytes
Studies dealing with transport of proteins from the oligodendrocyte cell body to the myelin sheath reveal the presence of different transport pathways. Proteolipid protein (PLP) is synthesized at the rough endoplasmic reticulum (ER) and then processed through the Golgi apparatus and transported to the myelin membranes. Myelin basic protein (MBP) on the other hand is synthesized locally at the ends of cell processes where its messenger RNA is translated on free ribosomes. Here we show that in rats that overexpress PLP, impairment of PLP transport from the cell body to the processes interferes with the translocation of other membrane proteins such as myelin-associated glycoprotein (MAG) and myelin oligodendrocyte glycoprotein (MOG), but not with peripherally translated MBP. In addition, it also impedes the transport of non-myelin proteins, for example the amyloid precursor protein (APP). At the ultrastructural level, the ER of these metabolically disturbed oligodendrocytes revealed extreme swelling of the cisternae, and immunohistochemistry revealed intense expression of the ER chaperone molecule BiP/GRP78 and ER folding enzyme protein disulfide isomerase (PDI). These features suggest that these oligodendrocytes, which were found exclusively in gray matter areas of the spinal cord, started an unfolded protein response while suffering from ER stress. Some of these disturbed oligodendrocytes were seen to undergo programmed cell death. These results indicate that gray matter oligodendrocyte differ from white matter oligodendrocytes in their capacity to stabilize metabolic disturbances by an unfolded protein response.
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