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Bcar1/p130Cas 对于心室发育和心流出道的神经嵴细胞重塑是必需的。

Bcar1/p130Cas is essential for ventricular development and neural crest cell remodelling of the cardiac outflow tract.

机构信息

Centre for Cardiometabolic and Vascular Science, BHF Laboratories, UCL Division of Medicine, 5 University Street, London WC1E 6JF, UK.

UCL Centre for Advanced Biomedical Imaging, Paul O'Gorman Building, 72 Huntley Street, London WC1E 6DD, UK.

出版信息

Cardiovasc Res. 2022 Jun 29;118(8):1993-2005. doi: 10.1093/cvr/cvab242.

Abstract

AIMS

The adapter protein p130Cas, encoded by the Bcar1 gene, is a key regulator of cell movement, adhesion, and cell cycle control in diverse cell types. Bcar1 constitutive knockout mice are embryonic lethal by embryonic days (E) 11.5-12.5, but the role of Bcar1 in embryonic development remains unclear. Here, we investigated the role of Bcar1 specifically in cardiovascular development and defined the cellular and molecular mechanisms disrupted following targeted Bcar1 deletions.

METHODS AND RESULTS

We crossed Bcar1 floxed mice with Cre transgenic lines allowing for cell-specific knockout either in smooth muscle and early cardiac tissues (SM22-Cre), mature smooth muscle cells (smMHC-Cre), endothelial cells (Tie2-Cre), second heart field cells (Mef2c-Cre), or neural crest cells (NCC) (Pax3-Cre) and characterized these conditional knock outs using a combination of histological and molecular biology techniques. Conditional knockout of Bcar1 in SM22-expressing smooth muscle cells and cardiac tissues (Bcar1SM22KO) was embryonically lethal from E14.5-15.5 due to severe cardiovascular defects, including abnormal ventricular development and failure of outflow tract (OFT) septation leading to a single outflow vessel reminiscent of persistent truncus arteriosus. SM22-restricted loss of Bcar1 was associated with failure of OFT cushion cells to undergo differentiation to septal mesenchymal cells positive for SMC-specific α-actin, and disrupted expression of proteins and transcription factors involved in epithelial-to-mesenchymal transformation (EMT). Furthermore, knockout of Bcar1 specifically in NCC (Bcar1PAX3KO) recapitulated part of the OFT septation and aortic sac defects seen in the Bcar1SM22KO mutants, indicating a cell-specific requirement for Bcar1 in NCC essential for OFT septation. In contrast, conditional knockouts of Bcar1 in differentiated smooth muscle, endothelial cells, and second heart field cells survived to term and were phenotypically normal at birth and postnatally.

CONCLUSION

Our work reveals a cell-specific requirement for Bcar1 in NCC, early myogenic and cardiac cells, essential for OFT septation, myocardialization and EMT/cell cycle regulation and differentiation to myogenic lineages.

摘要

目的

衔接蛋白 p130Cas 由 Bcar1 基因编码,是多种细胞类型中细胞运动、黏附和细胞周期调控的关键调节因子。Bcar1 组成型敲除小鼠在胚胎期第 11.5-12.5 天死亡,但 Bcar1 在胚胎发育中的作用仍不清楚。本研究旨在专门研究 Bcar1 在心血管发育中的作用,并确定靶向 Bcar1 缺失后细胞和分子机制受到的影响。

方法和结果

我们将 Bcar1 基因 floxed 小鼠与 Cre 转基因系杂交,使特定细胞类型(如平滑肌和早期心肌组织中的 SM22-Cre、成熟平滑肌细胞中的 smMHC-Cre、内皮细胞中的 Tie2-Cre、第二心区细胞中的 Mef2c-Cre 和神经嵴细胞中的 Pax3-Cre)发生敲除,并用组织学和分子生物学技术组合来表征这些条件性敲除小鼠。SM22 表达的平滑肌细胞和心肌组织中的 Bcar1 条件性敲除(Bcar1SM22KO)小鼠在胚胎期第 14.5-15.5 天因严重的心血管缺陷而死亡,包括心室发育异常和流出道(OFT)间隔缺失导致单个流出血管类似于永存性动脉干。SM22 限制的 Bcar1 缺失与 OFT 垫细胞无法分化为 SMC 特异性 α-肌动蛋白阳性的隔间质细胞有关,并破坏了上皮细胞向间充质转化(EMT)过程中涉及的蛋白质和转录因子的表达。此外,Bcar1 在神经嵴细胞(Bcar1PAX3KO)中的特异性敲除部分再现了 Bcar1SM22KO 突变体中观察到的 OFT 间隔缺失和主动脉囊缺陷,表明 Bcar1 在神经嵴细胞中对于 OFT 间隔形成是细胞特异性必需的。相比之下,在分化的平滑肌细胞、内皮细胞和第二心区细胞中条件性敲除 Bcar1 的小鼠能够存活到足月,出生和产后均表现正常。

结论

本研究揭示了 Bcar1 在神经嵴细胞、早期肌源性和心肌细胞中的细胞特异性需求,对于 OFT 间隔形成、心肌化和 EMT/细胞周期调控以及向肌源性谱系的分化是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b99/9239580/610eaf5237c7/cvab242ga1.jpg

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