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缺失连接蛋白 novex-3 导致心脏功能障碍,伴有心肌细胞增殖受损和核力学异常。

Loss of connectin novex-3 leads to heart dysfunction associated with impaired cardiomyocyte proliferation and abnormal nuclear mechanics.

机构信息

First Department of Physiology, Kawasaki Medical School, Kurashiki, 701-0192, Japan.

Central Research Institute, Kawasaki Medical School, Kurashiki, 701-0192, Japan.

出版信息

Sci Rep. 2024 Jun 14;14(1):13727. doi: 10.1038/s41598-024-64608-1.

Abstract

Connectin (also known as titin) is a giant striated muscle protein that functions as a molecular spring by providing elasticity to the sarcomere. Novex-3 is a short splice variant of connectin whose physiological function remains unknown. We have recently demonstrated using in vitro analyses that in addition to sarcomere expression, novex-3 was also expressed in cardiomyocyte nuclei exclusively during fetal life, where it provides elasticity/compliance to cardiomyocyte nuclei and promotes cardiomyocyte proliferation in the fetus, suggesting a non-sarcomeric function. Here, we analyzed novex-3 knockout mice to assess the involvement of this function in cardiac pathophysiology in vivo. Deficiency of novex-3 compromised fetal cardiomyocyte proliferation and induced the enlargement of individual cardiomyocytes in neonates. In adults, novex-3 deficiency resulted in chamber dilation and systolic dysfunction, associated with Ca dysregulation, resulting in a reduced life span. Mechanistic analyses revealed a possible association between impaired proliferation and abnormal nuclear mechanics, including stiffer nuclei positioned peripherally with stabilized circumnuclear microtubules in knockout cardiomyocytes. Although the underlying causal relationships were not fully elucidated, these data show that novex-3 has a vital non-sarcomeric function in cardiac pathophysiology and serves as an early contributor to cardiomyocyte proliferation.

摘要

连接蛋白(也称为肌联蛋白)是一种巨大的横纹肌蛋白,通过为肌节提供弹性,起到分子弹簧的作用。Novex-3 是连接蛋白的一种短剪接变体,其生理功能尚不清楚。我们最近通过体外分析表明,除了在肌节表达外,Novex-3 还仅在胎儿生命期间在心肌细胞核中表达,它为心肌细胞核提供弹性/顺应性,并促进胎儿心肌细胞增殖,提示存在非肌节功能。在这里,我们分析了 novex-3 敲除小鼠,以评估这种功能在体内心脏病理生理学中的参与情况。Novex-3 的缺乏会损害胎儿心肌细胞的增殖,并诱导新生儿心肌细胞的单个细胞增大。在成年人中,novex-3 的缺乏导致腔室扩张和收缩功能障碍,伴有钙失调,导致寿命缩短。机制分析显示,增殖异常和核力学异常之间可能存在关联,包括在敲除的心肌细胞中,核变硬并位于外周,核周微管稳定。尽管尚未完全阐明潜在的因果关系,但这些数据表明 novex-3 在心脏病理生理学中具有重要的非肌节功能,并作为心肌细胞增殖的早期贡献者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fb6/11178842/fb754fe82879/41598_2024_64608_Fig1a_HTML.jpg

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