首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Nuclear translocation of glyceraldehyde-3-phosphate dehydrogenase isoforms during neuronal apoptosis.
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Nuclear translocation of glyceraldehyde-3-phosphate dehydrogenase isoforms during neuronal apoptosis.

机译:神经元凋亡过程中甘油醛-3-磷酸脱氢酶同工型的核易位。

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摘要

Treatment with cytosine beta-D-arabinoside (AraC; 300 microM) induced a time-dependent accumulation of glyceraldehyde-3-phosphate dehydrogenase (GAPDH) protein in nuclei purified from cultured cerebellar granule cells, with a concomitant degradation of lamin B1, a nuclear membrane protein and a substrate of CPP32/caspase-3. Moreover, Asp-Glu-Val-Asp-fluoromethyl ketone (DEVD-fmk), a CPP32-selective antagonist, dose-dependently suppressed AraC-induced apoptosis of these neurons. Nuclear accumulation of GAPDH protein was associated with a progressive decrease in the activity of uracil-DNA glycosylase (UDG), one of the nuclear functions of GAPDH. The nuclear dehydrogenase activity of GAPDH was initially increased after treatment and then decreased parallel to UDG activity. Six GAPDH isoforms were detected in the nuclei of AraC-treated cells. The more alkaline isoforms, 1-3, constituted the bulk of the nuclear GAPDH, and the remaining isoforms, 4-6, were the minor species. Levels of all six isoforms were increased after treatment with AraC for 16 h; a 4-h treatment increased levels of only isoforms 4 and 5. Thus, it appears that various GAPDH isoforms are differentially regulated and may have distinct apoptotic roles. Pretreatment with GAPDH antisense oligonucleotide blocked the nuclear translocation of GAPDH isoforms, and the latter process occurred concurrently with a decrease in cytosolic GAPDH isoforms. Sodium nitroprusside-induced NAD labeling of nuclear GAPDH showed a 60% loss of GAPDH labeling after AraC treatment, suggesting that the active site of GAPDH may be covalently modified, denatured, or improperly folded. The unfolded protein response elicited by denatured GAPDH may contribute to AraC-induced neuronal death.
机译:用胞嘧啶β-D-阿拉伯糖苷(AraC; 300 microM)处理可诱导从培养的小脑颗粒细胞纯化的细胞核中3-磷酸甘油醛-磷酸脱氢酶(GAPDH)蛋白的时间依赖性积累,并伴随核蛋白Lamin B1的降解。膜蛋白和CPP32 / caspase-3的底物。此外,CPP32选择性拮抗剂Asp-Glu-Val-Asp-氟甲基酮(DEVD-fmk)剂量依赖性地抑制了AraC诱导的这些神经元凋亡。 GAPDH蛋白的核积累与尿嘧啶DNA糖基化酶(UDG)活性的逐步降低有关,尿嘧啶DNA糖基化酶是GAPDH的核功能之一。在治疗后,GAPDH的核脱氢酶活性最初增加,然后与UDG活性平行下降。在AraC处理的细胞核中检测到六种GAPDH亚型。碱性更高的同工型1-3构成了GAPDH核的主体,其余同工型4-6则是次要物种。用AraC处理16小时后,所有六种同工型的水平均升高。 4小时的治疗仅增加了亚型4和5的水平。因此,似乎各种GAPDH亚型受到差异调节,并且可能具有不同的凋亡作用。用GAPDH反义寡核苷酸预处理可阻止GAPDH亚型的核易位,后一过程与胞质GAPDH亚型的减少同时发生。硝普钠诱导的核GAPDH的NAD标记显示AraC处理后,GAPDH标记损失60%,表明GAPDH的活性位点可能被共价修饰,变性或折叠不当。变性的GAPDH引起的未折叠蛋白应答可能导致AraC诱导的神经元死亡。

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