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髓鞘 P0 终止密码子周围的系统发育保守序列对于产生 L-MPZ 的翻译通读是必需的。

Phylogenetically Conserved Sequences Around Myelin P0 Stop Codon are Essential for Translational Readthrough to Produce L-MPZ.

机构信息

Department of Molecular Neurobiology, Tokyo University of Pharmacy and Life Sciences, 1432-1 Horinouchi, Hachioji, Tokyo, 192-0392, Japan.

出版信息

Neurochem Res. 2018 Jan;43(1):227-237. doi: 10.1007/s11064-017-2423-5. Epub 2017 Oct 28.

Abstract

Myelin protein zero (P0, MPZ) is the main cell adhesion molecule in peripheral myelin, the sequence of which is evolutionarily highly conserved. Large myelin protein zero (L-MPZ) is a novel translational readthrough molecule in mammals in a physiological status and is encoded by the P0 mRNA with an extra domain. The sequence similarities in the L-MPZ-specific region are found in humans and frogs but not in fish P0 cDNA. Actual synthesis of L-MPZ has been detected in rat and mouse sciatic nerve but not yet evaluated in frogs and humans. The production mechanism and physiological functions of L-MPZ remain unknown. Additionally, the sequence context around the canonical stop codon is significant for readthrough in viruses and yeast, but the correlation between the sequence around P0 stop codon and L-MPZ synthesis is unclear. Here, we focused on the phylogenetic pathways in L-MPZ synthesis. We have shown that L-MPZ is widely produced from frogs to humans using western blotting against L-MPZ. Mutation analysis of the sequence around the stop codon for L-MPZ synthesis using a mammalian in vitro transcription/translation system revealed that the evolutionarily conserved sequence around P0 stop codon is susceptible to readthrough and is similar to the consensus motif in viruses and yeast UAG stop codon type molecules. Our results demonstrate that the phylogenetically conserved sequence around the canonical P0 stop codon is essential for L-MPZ synthesis, suggesting that phylogenetic emergence of L-MPZ in amphibians may be related to particular distribution and/or function in the PNS myelin.

摘要

髓鞘蛋白零 (P0,MPZ) 是周围髓鞘中的主要细胞粘附分子,其序列在进化上高度保守。大髓鞘蛋白零 (L-MPZ) 是哺乳动物在生理状态下的一种新型翻译通读分子,由 P0 mRNA 编码,具有额外的结构域。在人类和青蛙中发现了 L-MPZ 特有的区域序列相似性,但在鱼类 P0 cDNA 中没有发现。已在大鼠和小鼠坐骨神经中检测到 L-MPZ 的实际合成,但尚未在青蛙和人类中进行评估。L-MPZ 的产生机制和生理功能尚不清楚。此外,在病毒和酵母中,规范终止密码子周围的序列上下文对通读很重要,但 P0 终止密码子周围的序列与 L-MPZ 合成之间的相关性尚不清楚。在这里,我们专注于 L-MPZ 合成的系统发育途径。我们已经使用针对 L-MPZ 的 Western blot 显示,从青蛙到人类,广泛产生了 L-MPZ。使用哺乳动物体外转录/翻译系统对 L-MPZ 合成的终止密码子周围序列进行突变分析表明,P0 终止密码子周围进化保守的序列易发生通读,并且与病毒和酵母 UAG 终止密码子类型分子的共识基序相似。我们的结果表明,规范 P0 终止密码子周围的系统发育保守序列对于 L-MPZ 合成至关重要,这表明两栖动物中 L-MPZ 的系统发育出现可能与 PNS 髓鞘中的特定分布和/或功能有关。

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