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长链非编码RNA Kcnq1ot1和Lncpint参与太空暴露组诱导的骨骼肌萎缩。

Long non-coding RNAs Kcnq1ot1 and Lncpint are involved in skeletal muscle atrophy induced by the space exposome.

作者信息

Pérez-Díaz Sergio, Baselet Bjorn, Lovric Alen, Lundberg Tommy R, Neefs Mieke, Daenen Lisa, Rullman Eric, Fernandez-Gonzalo Rodrigo

机构信息

Department of Laboratory Medicine, Division of Clinical Physiology, Karolinska Institutet, Stockholm, Sweden.

Unit of Clinical Physiology, Karolinska University Hospital, Stockholm, Sweden.

出版信息

J Physiol. 2025 Jul;603(14):3973-3986. doi: 10.1113/JP288987. Epub 2025 Jun 29.

Abstract

Long non-coding RNAs (lncRNAs) play an important role in the regulation of skeletal muscle transcriptional processes, but their involvement in spaceflight- or inactivity-induced muscle atrophy remains poorly understood. To address this gap we simulated the space environment by combining microgravity, irradiation and stress in a mouse model. This simulation resulted in the differential expression (threshold set at P < 0.01) of 6191 protein-coding genes (3525 downregulated and 2666 upregulated compared to controls) and 465 lncRNAs, of which 27% were downregulated and 73% upregulated compared to controls. Particularly several previously identified lncRNAs involved in muscle regulation were affected, including H19 (log fold change, logFC: -2.0), Gm29773 (logFC: -1.4), Pvt1 (logFC: 0.63), Kcnq1ot1 (logFC: 0.31) and Lncpint (logFC: 0.86). To determine whether similar changes occurred in humans, we examined the expression of lncRNAs during long-term (3 months) head-down tilt bed rest, a model for microgravity-induced muscle atrophy. We found that Kcnq1ot1 and Lncpint (human homologues KCNQ1OT1 and LINC-PINT) were upregulated in response to simulated microgravity. In addition KCNQ1OT1 was increased in a human 3-D in vitro model of muscle atrophy. These results are the first to demonstrate the involvement of lncRNAs in spaceflight- and severe inactivity-induced muscle atrophy, in particular KCNQ1OT1 and LINC-PINT. Our study provides novel insights into the contribution of lncRNAs to muscle atrophy caused by the space exposome and has broader implications for understanding and combating muscle atrophy in clinical scenarios of prolonged inactivity. Future research can build on these findings to investigate the therapeutic potential of lncRNAs in muscle atrophy. KEY POINTS: The combination of unloading, irradiation and stress led to a significant reduction in skeletal muscle mass and marked transcriptional responses (6191 differentially expressed genes) in the skeletal muscle of mice. The simulated space exposome led to the differential expression of 465 long non-coding RNAs (lncRNAs) in mouse skeletal muscle. Two lncRNAs upregulated in mice - Kcnq1ot1 and Lncpint - were also upregulated in human muscle after 3 months of bed rest (human homologues KCNQ1OT1 and LINC-PINT). KCNQ1OT1, but not LINC-PINT, was upregulated in a human 3-D in vitro model of muscle atrophy. This study offers fundamental insights into the role of lncRNAs in muscle atrophy induced by the space exposome. These findings have broader implications for understanding and mitigating muscle atrophy in clinical settings, such as prolonged inactivity.

摘要

长链非编码RNA(lncRNAs)在骨骼肌转录过程的调控中发挥着重要作用,但其在太空飞行或缺乏活动引起的肌肉萎缩中的作用仍知之甚少。为了填补这一空白,我们在小鼠模型中通过结合微重力、辐射和应激来模拟太空环境。这种模拟导致6191个蛋白质编码基因(与对照组相比,3525个下调,2666个上调)和465个lncRNAs发生差异表达(阈值设定为P<0.01),与对照组相比,其中27%下调,73%上调。特别是一些先前确定的参与肌肉调节的lncRNAs受到影响,包括H19(对数倍变化,logFC:-2.0)、Gm29773(logFC:-1.4)、Pvt1(logFC:0.63)、Kcnq1ot1(logFC:0.31)和Lncpint(logFC:0.86)。为了确定人类是否发生类似变化,我们检测了长期(3个月)头低位卧床休息期间lncRNAs的表达,这是一种模拟微重力引起肌肉萎缩的模型。我们发现,Kcnq1ot1和Lncpint(人类同源物KCNQ1OT1和LINC-PINT)在模拟微重力作用下上调。此外,在人类肌肉萎缩的三维体外模型中,KCNQ1OT1也增加。这些结果首次证明lncRNAs参与了太空飞行和严重缺乏活动引起的肌肉萎缩,特别是KCNQ1OT1和LINC-PINT。我们的研究为lncRNAs对太空暴露组引起的肌肉萎缩的作用提供了新的见解,并对理解和对抗长期缺乏活动临床情况下的肌肉萎缩具有更广泛的意义。未来的研究可以基于这些发现来研究lncRNAs在肌肉萎缩中的治疗潜力。要点:卸载、辐射和应激的组合导致小鼠骨骼肌质量显著降低,并在骨骼肌中产生明显的转录反应(6191个差异表达基因)。模拟太空暴露组导致小鼠骨骼肌中465个长链非编码RNA(lncRNAs)发生差异表达。在小鼠中上调的两个lncRNAs——Kcnq1ot1和Lncpint——在卧床休息3个月后的人类肌肉中也上调(人类同源物KCNQ1OT1和LINC-PINT)。在人类肌肉萎缩的三维体外模型中,KCNQ1OT1上调,而LINC-PINT未上调。本研究为lncRNAs在太空暴露组引起的肌肉萎缩中的作用提供了基本见解。这些发现对理解和减轻临床环境中的肌肉萎缩具有更广泛的意义,例如长期缺乏活动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d738/12320216/1de8653303a5/TJP-603-3973-g003.jpg

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