首页> 美国卫生研究院文献>Frontiers in Cellular Neuroscience >The Bcl-2 Homology-3 Domain (BH3)-Only Proteins Bid DP5/Hrk and BNip3L Are Upregulated in Reactive Astrocytes of End-Stage Mutant SOD1 Mouse Spinal Cord
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The Bcl-2 Homology-3 Domain (BH3)-Only Proteins Bid DP5/Hrk and BNip3L Are Upregulated in Reactive Astrocytes of End-Stage Mutant SOD1 Mouse Spinal Cord

机译:Bcl-2同源3域(BH3)仅蛋白质投标DP5 / Hrk和BNip3L在末期突变SOD1小鼠脊髓的反应性星形胶质细胞中上调。

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摘要

The molecular mechanisms leading to motor neuron death in amyotrophic lateral sclerosis (ALS) are unknown; however, several studies have provided evidence of a central role for intrinsic apoptosis. Bcl-2 homology-3 domain (BH3)-only proteins are pro-apoptotic members of the Bcl-2 family whose enhanced expression acts as a trigger for the intrinsic apoptotic cascade. Here, we compared the relative expression of BH3-only proteins in the spinal cord of end-stage G93A mutant SOD1 mice to age-matched wild-type (WT) mice. Large alpha motor neurons in lumbar spinal cord sections of both WT and end-stage mutant SOD1 mice stained positively for a number of BH3-only proteins; however, no discernible differences were observed in either the relative intensity of staining or number of BH3-immunoreactive motor neurons between WT and mutant SOD1 mice. On the other hand, we observed significantly enhanced staining for Bid, DP5/Hrk, and BNip3L in GFAP-positive astrocytes only in end-stage G93A mutant SOD1 spinal cord. Staining of additional end-stage G93A mutant SOD1 tissues showed specific upregulation of DP5/Hrk in lumbar spinal cord sections, but not in cerebellum or cortex. Finally, examination of protein expression using western blotting also revealed marked increases in DP5/Hrk and BNip3L in G93A mutant SOD1 lumbar spinal cord lysates compared to WT controls. The upregulation of a specific subset of BH3-only proteins, including Bid, DP5/Hrk, and BNip3L, in reactive astrocytes suggests that these proteins may execute a novel non-apoptotic function within astrocytes to promote ALS disease progression, thus providing a new potential target for therapeutic intervention.
机译:肌萎缩性侧索硬化症(ALS)中导致运动神经元死亡的分子机制尚不清楚;然而,一些研究提供了内在凋亡的中心作用的证据。仅Bcl-2同源3结构域(BH3)的蛋白是Bcl-2家族的促凋亡成员,其增强的表达充当固有凋亡级联的触发。在这里,我们比较了仅BH3蛋白在晚期G93A突变型SOD1小鼠与年龄匹配的野生型(WT)小鼠的脊髓中的相对表达。野生型和末期突变型SOD1小鼠的腰脊髓节段中的大型α运动神经元对许多仅BH3的蛋白质染色呈阳性。然而,在野生型和突变型SOD1小鼠之间,在相对染色强度或BH3免疫反应性运动神经元的数量上均未观察到明显差异。另一方面,我们仅在晚期G93A突变型SOD1脊髓中观察到GFAP阳性星形胶质细胞中Bid,DP5 / Hrk和BNip3L的染色明显增强。末期G93A突变型SOD1其他组织的染色显示,腰脊髓切片中DP5 / Hrk的特异性上调,而小脑或皮质中没有。最后,使用蛋白质印迹法检查蛋白质表达还发现与WT对照相比,G93A突变型SOD1腰脊髓裂解液中DP5 / Hrk和BNip3L显着增加。反应性星形胶质细胞中仅BH3蛋白的特定子集(包括Bid,DP5 / Hrk和BNip3L)的上调表明,这些蛋白可能在星形胶质细胞内执行新的非凋亡功能,从而促进ALS疾病的发展,从而提供了新的潜力治疗干预的目标。

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