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Pdzrn3 的减少对于心脏成熟是必需的,并能预防心力衰竭。

Decrease of Pdzrn3 is required for heart maturation and protects against heart failure.

机构信息

Univ. Bordeaux, Inserm, UMR1034, Biology of Cardiovascular Diseases, 1 Avenue de Magellan, 33600, Pessac, France.

Faculté de Médecine, Université Pierre et Marie Curie, Sorbonne University, INSERM UMR_S1166, Paris, France.

出版信息

Sci Rep. 2022 Jan 7;12(1):8. doi: 10.1038/s41598-021-03795-7.

Abstract

Heart failure is the final common stage of most cardiopathies. Cardiomyocytes (CM) connect with others via their extremities by intercalated disk protein complexes. This planar and directional organization of myocytes is crucial for mechanical coupling and anisotropic conduction of the electric signal in the heart. One of the hallmarks of heart failure is alterations in the contact sites between CM. Yet no factor on its own is known to coordinate CM polarized organization. We have previously shown that PDZRN3, an ubiquitine ligase E3 expressed in various tissues including the heart, mediates a branch of the Planar cell polarity (PCP) signaling involved in tissue patterning, instructing cell polarity and cell polar organization within a tissue. PDZRN3 is expressed in the embryonic mouse heart then its expression dropped significantly postnatally corresponding with heart maturation and CM polarized elongation. A moderate CM overexpression of Pdzrn3 (Pdzrn3 OE) during the first week of life, induced a severe eccentric hypertrophic phenotype with heart failure. In models of pressure-overload stress heart failure, CM-specific Pdzrn3 knockout showed complete protection against degradation of heart function. We reported that Pdzrn3 signaling induced PKC ζ expression, c-Jun nuclear translocation and a reduced nuclear ß catenin level, consistent markers of the planar non-canonical Wnt signaling in CM. We then show that subcellular localization (intercalated disk) of junction proteins as Cx43, ZO1 and Desmoglein 2 was altered in Pdzrn3 OE mice, which provides a molecular explanation for impaired CM polarization in these mice. Our results reveal a novel signaling pathway that controls a genetic program essential for heart maturation and maintenance of overall geometry, as well as the contractile function of CM, and implicates PDZRN3 as a potential therapeutic target for the prevention of human heart failure.

摘要

心力衰竭是大多数心脏病的终末共同阶段。心肌细胞(CM)通过连接蛋白复合物在其末端与其他细胞相连。心肌细胞的这种平面和定向组织对于心脏机械耦联和电信号的各向异性传导至关重要。心力衰竭的一个标志是 CM 之间的接触点发生改变。然而,目前还没有一个单独的因素可以协调 CM 的极化组织。我们之前已经表明,PDZRN3 是一种在包括心脏在内的各种组织中表达的泛素连接酶 E3,它介导了平面细胞极性(PCP)信号的分支,该信号涉及组织模式形成,指导细胞极性和细胞在组织内的极性组织。PDZRN3 在胚胎期小鼠心脏中表达,然后在出生后表达显著下降,与心脏成熟和 CM 极化伸长相对应。在生命的第一周适度过表达 Pdzrn3(Pdzrn3 OE),会导致严重的偏心性肥厚表型和心力衰竭。在压力超负荷应激性心力衰竭模型中,CM 特异性 Pdzrn3 敲除完全保护心脏功能免受降解。我们报道 PDZRN3 信号诱导 PKC ζ 表达、c-Jun 核易位和核 β 连环蛋白水平降低,这是 CM 平面非经典 Wnt 信号的一致标志物。然后,我们发现 Pdzrn3 OE 小鼠的连接蛋白(Cx43、ZO1 和桥粒蛋白 2)亚细胞定位(闰盘)发生改变,这为这些小鼠中 CM 极化受损提供了分子解释。我们的研究结果揭示了一种新的信号通路,该通路控制了心脏成熟和维持整体几何形状以及 CM 收缩功能所必需的遗传程序,并表明 PDZRN3 可能是预防人类心力衰竭的潜在治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c54/8742099/b53edc44026c/41598_2021_3795_Fig1_HTML.jpg

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