Sertm2是一种保守的微肽,促进gdnf介导的运动神经元亚型规范。

IF 6.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Fang-Yu Hsu, Ya-Ping Yen, Hung-Chi Fan, Mien Chang, Jun-An Chen
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引用次数: 0

摘要

长链非编码rna (lncRNAs)中开放阅读框编码的小微肽由于其小尺寸和低丰度而经常被忽视。然而,新出现的证据将这些微肽与各种生物途径联系起来,尽管它们在神经发育和神经退行性变中的作用仍不清楚。在这里,我们研究了由lncRNA A730046J19Rik编码的小鼠微肽Sertm2在脊髓运动神经元(MN)发育过程中的功能。预计Sertm2是一种保守的跨膜蛋白,在小鼠和人类中都有发现,亚细胞分析显示它富集于细胞质和神经突中。通过产生C末端标记的Sertm2并从A730046J19Rik位点表达,我们证明了Sertm2微肽定位于小鼠脊髓MNs中。GDNF信号诱导的Etv4+运动池在Sertm2敲除小鼠中受损,表现出运动神经树突化缺陷,最终导致运动协调受损和肌肉无力。同样,人类SERTM2敲除ipsc衍生的MN也显示出减少的ETV4+运动池,这突出表明SERTM2是一种新的、进化上保守的微肽,对于维持gdnf诱导的MN亚型身份至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sertm2 is a conserved micropeptide that promotes GDNF-mediated motor neuron subtype specification.

Small open-reading frame-encoded micropeptides within long noncoding RNAs (lncRNAs) are often overlooked due to their small size and low abundance. However, emerging evidence links these micropeptides to various biological pathways, though their roles in neural development and neurodegeneration remain unclear. Here, we investigate the function of murine micropeptide Sertm2, encoded by the lncRNA A730046J19Rik, during spinal motor neuron (MN) development. Sertm2 is predicted to be a conserved transmembrane protein found in both mouse and human, with subcellular analysis revealing that it is enriched in the cytoplasm and neurites. By generating C terminally Flag-tagged Sertm2 and expressing it from the A730046J19Rik locus, we demonstrate that the Sertm2 micropeptide localizes in spinal MNs in mice. The GDNF signaling-induced Etv4+ motor pool is impaired in Sertm2 knockout mice, which display motor nerve arborization defects that culminate in impaired motor coordination and muscle weakness. Similarly, human SERTM2 knockout iPSC-derived MNs also display reduced ETV4+ motor pools, highlighting that Sertm2 is a novel, evolutionarily conserved micropeptide essential for maintaining GDNF-induced MN subtype identity.

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来源期刊
EMBO Reports
EMBO Reports 生物-生化与分子生物学
CiteScore
11.20
自引率
1.30%
发文量
267
审稿时长
1 months
期刊介绍: EMBO Reports is a scientific journal that specializes in publishing research articles in the fields of molecular biology, cell biology, and developmental biology. The journal is known for its commitment to publishing high-quality, impactful research that provides novel physiological and functional insights. These insights are expected to be supported by robust evidence, with independent lines of inquiry validating the findings. The journal's scope includes both long and short-format papers, catering to different types of research contributions. It values studies that: Communicate major findings: Articles that report significant discoveries or advancements in the understanding of biological processes at the molecular, cellular, and developmental levels. Confirm important findings: Research that validates or supports existing knowledge in the field, reinforcing the reliability of previous studies. Refute prominent claims: Studies that challenge or disprove widely accepted ideas or hypotheses in the biosciences, contributing to the correction and evolution of scientific understanding. Present null data: Papers that report negative results or findings that do not support a particular hypothesis, which are crucial for the scientific process as they help to refine or redirect research efforts. EMBO Reports is dedicated to maintaining high standards of scientific rigor and integrity, ensuring that the research it publishes contributes meaningfully to the advancement of knowledge in the life sciences. By covering a broad spectrum of topics and encouraging the publication of both positive and negative results, the journal plays a vital role in promoting a comprehensive and balanced view of scientific inquiry. 
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