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心肌祖细胞中细胞膜相关蛋白同种型 3(SLMAP3)缺失延缓胚胎心肌生长而不影响 Hippo 通路。

Deletion of Sarcolemmal Membrane-Associated Protein Isoform 3 (SLMAP3) in Cardiac Progenitors Delays Embryonic Growth of Myocardium without Affecting Hippo Pathway.

机构信息

Department of Cellular and Molecular Medicine, Faculty of Medicine, University of Ottawa, 451 Smyth Road, Ottawa, ON K1H 8M5, Canada.

出版信息

Int J Mol Sci. 2024 Mar 1;25(5):2888. doi: 10.3390/ijms25052888.

Abstract

The slmap gene is alternatively spliced to generate many isoforms that are abundant in developing myocardium. The largest protein isoform SLMAP3 is ubiquitously expressed and has been linked to cardiomyopathy, Brugada syndrome and Hippo signaling. To examine any role in cardiogenesis, mice homozygous for floxed slmap allele were crossed with Nkx2.5-cre mice to nullify its expression in cardiac progenitors. Targeted deletion of the slmap gene resulted in the specific knockout (KO) of the SLMAP3 (91 KDa) isoform without any changes in the expression of the SLMAP2 (43 kDa) or the SLMAP1 (~35 kDa) isoforms which continued to accumulate to similar levels as seen in Wt embryonic hearts. The loss of SLMAP3 from cardiac progenitors resulted in decreased size of the developing embryonic hearts evident at E9.5 to E16.5 with four small chambers and significantly thinner left ventricles. The proliferative capacity assessed with the phosphorylation of histone 3 or with Ki67 in E12.5 hearts was not significantly altered due to SLMAP3 deficiency. The size of embryonic cardiomyocytes, marked with anti-Troponin C, revealed significantly smaller cells, but their hypertrophic response (AKT1 and MTOR1) was not significantly affected by the specific loss of SLMAP3 protein. Further, no changes in phosphorylation of MST1/2 or YAP were detected in SLMAP3-KO embryonic myocardium, ruling out any impact on Hippo signaling. Rat embryonic cardiomyocytes express the three SLMAP isoforms and their knockdown (KD) with sh-RNA, resulted in decreased proliferation and enhanced senescence but without any impact on Hippo signaling. Collectively, these data show that SLMAP is critical for normal cardiac development with potential for the various isoforms to serve compensatory roles. Our data imply novel mechanisms for SLMAP action in cardiac growth independent of Hippo signaling.

摘要

slmap 基因通过选择性剪接产生许多在发育心肌中丰富的同工型。最大的蛋白质同工型 SLMAP3 广泛表达,并与心肌病、Brugada 综合征和 Hippo 信号通路有关。为了研究其在心脏发生中的任何作用,将 floxed slmap 等位基因纯合的小鼠与 Nkx2.5-cre 小鼠杂交,以使心脏祖细胞中的其表达失活。slmap 基因的靶向缺失导致 SLMAP3(91 kDa)同工型的特异性敲除(KO),而 SLMAP2(43 kDa)或 SLMAP1(~35 kDa)同工型的表达没有任何变化,它们继续积累到与 Wt 胚胎心脏相似的水平。心脏祖细胞中 SLMAP3 的缺失导致发育中的胚胎心脏在 E9.5 至 E16.5 时明显变小,呈现四个小腔室,左心室明显变薄。E12.5 心脏中通过组蛋白 3 的磷酸化或 Ki67 评估的增殖能力由于 SLMAP3 缺乏没有明显改变。用抗肌钙蛋白 C 标记的胚胎心肌细胞大小揭示出明显较小的细胞,但它们的肥大反应(AKT1 和 MTOR1)不受 SLMAP3 蛋白特异性缺失的显著影响。此外,在 SLMAP3-KO 胚胎心肌中未检测到 MST1/2 或 YAP 的磷酸化变化,排除了对 Hippo 信号通路的任何影响。大鼠胚胎心肌细胞表达三种 SLMAP 同工型,其用 sh-RNA 敲低(KD)导致增殖减少和衰老增强,但对 Hippo 信号通路没有任何影响。总的来说,这些数据表明 SLMAP 对正常心脏发育至关重要,各种同工型可能具有代偿作用。我们的数据表明 SLMAP 在心脏生长中的作用有新的机制,与 Hippo 信号通路无关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/754d/10932035/6756fd3f66c7/ijms-25-02888-g001.jpg

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