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异质性核糖核蛋白K的矛盾之处:缺失和过量均会损害小鼠的骨骼肌功能。

The paradox of hnRNPK: both absence and excess impair skeletal muscle function in mice.

作者信息

Xu Yongjie, Wang Yuxi, Cheng Xiaofang, Zhang Mengjia, Chen Nuo, Guo Jiahua, Huang Yueru, Li Quanxi, Li Tianyu, Meng Tiantian, Li Cencen, Zhang Pengpeng, Xu Haixia

机构信息

College of Life Science, Xinyang Normal University, Xinyang, 464000, China.

Institute for Conservation and Utilization of Agro-Bioresources in Dabie Mountain, Xinyang Normal University, Xinyang, 464000, China.

出版信息

Skelet Muscle. 2025 Aug 7;15(1):20. doi: 10.1186/s13395-025-00393-3.

Abstract

BACKGROUND

The RNA-binding protein hnRNPK is essential for animal growth and development, with a particular emphasis in myogenesis. Despite its importance, the precise mechanisms by which hnRNPK influences skeletal muscle physiology and development remain inadequately characterized.

METHODS

To explore its regulatory function, we developed a Myf5-cre-mediated myoblast precursor-specific knockout mouse model (Hnrnpk mKO), an Acta1-CreEsr1-mediated myofiber-specific inducible knockout mouse model (Hnrnpk aKO), and an AAV9-mediated skeletal muscle-specific overexpression mouse model (AAV9-hnRNPK). Morphological alterations in skeletal muscle were assessed using hematoxylin and eosin (HE) staining subsequent to hnRNPK knockout or overexpression. Global gene expression changes in the tibialis anterior (TA) muscle were assessed via RNA sequencing (RNA-seq). Furthermore, reverse transcription quantitative polymerase chain reaction (RT-qPCR), western blot analysis, immunofluorescence, immunohistochemistry, co-immunoprecipitation (Co-IP), dual luciferase analysis, and reactive oxygen species (ROS) detection were utilized to elucidate the molecular mechanisms by which hnRNPK contributes to skeletal muscle development.

RESULTS

Our findings indicate that the ablation of hnRNPK in myoblast precursors significantly impairs muscle development, disrupts fetal myogenesis, and results in embryonic lethality. In adult mice, both the loss and gain of hnRNPK function led to reduced muscle mass, decreased fiber size, and compromised skeletal muscle homeostasis. Importantly, the knockout of hnRNPK had a more substantial impact on skeletal muscle development compared to its overexpression, with myofiber-specific knockout leading to mortality within two weeks. Mechanistically, hnRNPK deficiency was associated with increased apoptosis and muscle atrophy, characterized by elevated expression of genes involved in apoptosis, muscle atrophy, and protein catabolism, along with impaired muscle contraction and extracellular matrix (ECM) organization. Conversely, hnRNPK overexpression was correlated with enhanced ferroptosis pathway and improved ECM organization, but was also associated with reduced oxidative phosphorylation and protein synthesis. The overexpression likely promotes ferroptosis via the hnRNPK/P53/Slc7a11/Gpx4 pathway, thereby accelerating muscle aging and reducing muscle mass.

CONCLUSION

In conclusion, our findings underscore the critical importance of precise hnRNPK expression levels in maintaining skeletal muscle health. Both deficiency and overexpression of hnRNPK disrupt skeletal muscle development, highlighting its pivotal role in muscle physiology.

CLINICAL TRIAL NUMBER

Not applicable.

摘要

背景

RNA结合蛋白hnRNPK对动物生长发育至关重要,在肌生成过程中作用尤为突出。尽管其重要性显著,但hnRNPK影响骨骼肌生理和发育的精确机制仍未得到充分阐明。

方法

为探究其调控功能,我们构建了Myf5-cre介导的成肌细胞前体特异性敲除小鼠模型(Hnrnpk mKO)、Acta1-CreEsr1介导的肌纤维特异性诱导敲除小鼠模型(Hnrnpk aKO)以及AAV9介导的骨骼肌特异性过表达小鼠模型(AAV9-hnRNPK)。在hnRNPK敲除或过表达后,使用苏木精和伊红(HE)染色评估骨骼肌的形态学改变。通过RNA测序(RNA-seq)评估胫前肌(TA)的整体基因表达变化。此外,利用逆转录定量聚合酶链反应(RT-qPCR)、蛋白质免疫印迹分析、免疫荧光、免疫组织化学、免疫共沉淀(Co-IP)、双荧光素酶分析和活性氧(ROS)检测来阐明hnRNPK促进骨骼肌发育的分子机制。

结果

我们的研究结果表明,成肌细胞前体中hnRNPK的缺失显著损害肌肉发育,破坏胎儿期肌生成,并导致胚胎致死。在成年小鼠中,hnRNPK功能的丧失和获得均导致肌肉质量下降、纤维尺寸减小以及骨骼肌内环境稳态受损。重要的是,与过表达相比,hnRNPK的敲除对骨骼肌发育的影响更大,肌纤维特异性敲除导致两周内死亡。机制上,hnRNPK缺乏与细胞凋亡增加和肌肉萎缩相关,其特征是参与细胞凋亡、肌肉萎缩和蛋白质分解代谢的基因表达升高,同时肌肉收缩和细胞外基质(ECM)组织受损。相反,hnRNPK过表达与铁死亡途径增强和ECM组织改善相关,但也与氧化磷酸化和蛋白质合成减少有关。过表达可能通过hnRNPK/P53/Slc7a11/Gpx4途径促进铁死亡,从而加速肌肉衰老并减少肌肉质量。

结论

总之,我们的研究结果强调了精确的hnRNPK表达水平在维持骨骼肌健康中的至关重要性。hnRNPK的缺乏和过表达均会破坏骨骼肌发育,突出了其在肌肉生理学中的关键作用。

临床试验编号

不适用。

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