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在qk(v)髓鞘形成异常中,不同的分子机制导致髓鞘碱性蛋白和2',3'-环核苷酸3'-磷酸二酯酶减少。

Distinct molecular mechanisms lead to diminished myelin basic protein and 2',3'-cyclic nucleotide 3'-phosphodiesterase in qk(v) dysmyelination.

作者信息

Zhang Y, Feng Y

机构信息

Department of Pharmacology, Emory University School of Medicine, Atlanta, Georgia 30322, USA.

出版信息

J Neurochem. 2001 Apr;77(1):165-72. doi: 10.1046/j.1471-4159.2001.t01-1-00224.x.

Abstract

The genetic lesion of quakingviable (qk(v)) causes diminished expression of the QKI RNA-binding protein in myelin producing cells. Consequently, several structural myelin proteins are severely reduced. Among these affected proteins, the reduction of the myelin basic protein (MBP) results from post-transcriptional abnormalities of the MBP mRNA, presumably due to the lack of interactions with QKI. However, whether this is the common mechanism for reduced expression of other myelin proteins in qk(v) dysmyelination remains unclear. Here we report that distinct molecular mechanisms underlie the reduction of MBP and the 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNP) in qk(v) dysmyelination. MBP transcripts bind QKI strongly and are markedly reduced in the qk(v)/qk(v) oligodendrocytes in which QKI is almost completely lost. In contrast, CNP transcripts bind QKI weakly and are only slightly affected by the lack of QKI. None the less, CNP proteins are severely reduced in the qk(v)/qk(v) brain. Since CNP transcripts are predominantly associated with translating polyribosomes, diminished CNP expression in qk(v) dysmyelination is unlikely to be due to translational failures, but more likely results from accelerated protein degradation.

摘要

震颤存活基因(qk(v))的遗传损伤导致髓鞘生成细胞中QKI RNA结合蛋白的表达减少。因此,几种结构性髓鞘蛋白严重减少。在这些受影响的蛋白中,髓鞘碱性蛋白(MBP)的减少是由于MBP mRNA的转录后异常,可能是由于缺乏与QKI的相互作用。然而,这是否是qk(v)脱髓鞘中其他髓鞘蛋白表达减少的共同机制仍不清楚。在这里,我们报告qk(v)脱髓鞘中MBP和2',3'-环核苷酸3'-磷酸二酯酶(CNP)减少的潜在分子机制不同。MBP转录本与QKI强烈结合,在几乎完全缺失QKI的qk(v)/qk(v)少突胶质细胞中显著减少。相比之下,CNP转录本与QKI弱结合,仅受到QKI缺失的轻微影响。尽管如此,qk(v)/qk(v)脑内的CNP蛋白严重减少。由于CNP转录本主要与正在翻译的多核糖体相关,qk(v)脱髓鞘中CNP表达减少不太可能是由于翻译失败,而更可能是由于蛋白质降解加速。

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