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Ufsp1的缺失不会在神经肌肉接头处引起重大变化。

Loss of Ufsp1 does not cause major changes at the neuromuscular junction.

作者信息

Calvo Cristofer, Smith Coalesco, Song Taejeong, Montecino-Morales Fabian, Sadayappan Sakthivel, Millay Douglas P, Kim Minchul

机构信息

Division of Molecular Cardiovascular Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio, United States of America.

Universite´ de Strasbourg, Strasbourg, France.

出版信息

PLoS One. 2025 Aug 1;20(8):e0328690. doi: 10.1371/journal.pone.0328690. eCollection 2025.

Abstract

UFMylation is a Ubiquitin-like post-translational modification involved in myriad of cellular processes. Enzymes involved in this pathway, including ligases and UFM1-specific proteases, are essential for development and homeostasis. Our previous transcriptomic analyses identified an enrichment of Ufsp1 at the neuromuscular junction of skeletal muscle cells. Ufsp1, one of the two UFM1 proteases, had been considered a pseudogene due to truncation of its catalytic domain in several species, including humans. However, recent findings revealed that Ufsp1 is translated from a non-canonical start codon in humans, yielding a catalytically active enzyme. This discovery has revived interest in studying Ufsp1's role in vivo. We generated two mutant mouse models, one with a point mutation abolishing catalytic activity and another with complete knockout of the gene. Unlike other UFMylation pathway enzymes, both Ufsp1 mutants were born in normal ratios and did not exhibit gross phenotypic abnormalities. Despite the enrichment of Ufsp1 at neuromuscular junctions, only mild structural alterations of this synapse were detected, which did not impact overall muscle function. Our findings indicate that Ufsp1 is dispensable for normal development and homeostasis in mice, but further exploration of its function is needed in pathological conditions.

摘要

泛素样修饰(UFMylation)是一种类似泛素的翻译后修饰,参与众多细胞过程。参与该途径的酶,包括连接酶和UFM1特异性蛋白酶,对于发育和体内平衡至关重要。我们之前的转录组分析发现,Ufsp1在骨骼肌细胞的神经肌肉接头处富集。Ufsp1是两种UFM1蛋白酶之一,由于其催化结构域在包括人类在内的几个物种中被截断,曾被认为是一个假基因。然而,最近的研究结果表明,Ufsp1在人类中从一个非经典起始密码子翻译,产生一种具有催化活性的酶。这一发现重新激发了人们对研究Ufsp1在体内作用的兴趣。我们构建了两种突变小鼠模型,一种是点突变消除催化活性,另一种是基因完全敲除。与其他泛素样修饰途径的酶不同,两种Ufsp1突变体的出生比例正常,且未表现出明显的表型异常。尽管Ufsp1在神经肌肉接头处富集,但仅检测到该突触的轻微结构改变,并未影响整体肌肉功能。我们的研究结果表明,Ufsp1对于小鼠的正常发育和体内平衡并非必需,但在病理条件下需要进一步探索其功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9265/12316231/fdf84e063924/pone.0328690.g001.jpg

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