首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Destabilization and mislocalization of myelin basic protein mRNAs in quaking dysmyelination lacking the QKI RNA-binding proteins.
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Destabilization and mislocalization of myelin basic protein mRNAs in quaking dysmyelination lacking the QKI RNA-binding proteins.

机译:缺乏QKI RNA结合蛋白的地震性髓鞘形成过程中髓磷脂碱性蛋白mRNA的失稳和错位。

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摘要

Quakingviable (qk(v)) is a well known dysmyelination mutation. Recently, the genetic lesion of qk(v) has been defined as a deletion 5' to the qkI gene, which results in the severe reduction of the qkI-encoded QKI RNA-binding proteins in myelin-producing cells. However, no comprehensive model has been proposed regarding how the lack of QKI leads to dysmyelination. We hypothesized that QKI binds to myelin protein mRNAs, and the lack of QKI causes posttranscriptional misregulation, which in turn leads to the loss of the corresponding myelin proteins. To test this hypothesis, we developed an RNase protection assay to directly measure the mRNA isoforms encoding the myelin basic proteins (MBPs) in the brain. Our result suggested that isoform-preferential destabilization of MBP mRNAs in the cytoplasm was responsible for the reduced MBPs in the qk(v)/qk(v) brain during early myelination. In addition, we detected markedly reduced MBP mRNAs in the qk(v)/qk(v) myelin fraction with concomitant accumulation of MBP mRNAs associated with membrane-free polyribosomes. Presumably, the impaired localization of MBP mRNAs to the myelin membrane may cause insufficient incorporation of the newly synthesized MBPs into the myelin sheath. Finally, we observed interactions between QKI and MBP mRNAs, and removing MBP 3'UTR significantly reduced QKI-binding. Taken together, these observations suggest that misregulation at multiple posttranscriptional steps is responsible for the severe reduction of MBPs in qk(v) dysmyelination, presumably because of the lack of interactions between MBP mRNAs and the QKI RNA-binding proteins.
机译:Quakingviable(qk(v))是众所周知的髓鞘异位突变。最近,qk(v)的遗传损伤已被定义为qkI基因的5'缺失,这导致髓磷脂产生细胞中qkI编码的QKI RNA结合蛋白的严重减少。但是,关于QKI的缺乏如何导致脱髓鞘的问题,尚未提出全面的模型。我们假设QKI绑定到髓磷脂蛋白的mRNA,而缺少QKI会导致转录后的失调,进而导致相应髓磷脂蛋白的丢失。为了验证这一假设,我们开发了一种RNase保护测定法,以直接测量大脑中编码髓鞘碱性蛋白(MBP)的mRNA同工型。我们的结果表明,胞质中MBP mRNA的亚型优先去稳定化是导致早期髓鞘形成期间qk(v)/ qk(v)脑内MBP减少的原因。另外,我们在qk(v)/ qk(v)髓磷脂级分中检测到MBP mRNA的显着降低,同时伴随着与无膜多核糖体相关的MBP mRNA的积累。据推测,MBP mRNA在髓磷脂膜上的定位受损可能会导致新合成的MBP不足以掺入髓鞘。最后,我们观察到QKI与MBP mRNA之间的相互作用,并去除MBP 3'UTR显着降低了QKI结合。综上所述,这些观察结果表明,多个转录后步骤的失调是导致qk(v)脱髓鞘的MBP严重减少的原因,大概是因为MBP mRNA和QKI RNA结合蛋白之间缺乏相互作用。

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