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将 Shox2 的形态发生调节功能与其在窦房结发育中的细胞命运保护作用分离。

Segregation of morphogenetic regulatory function of Shox2 from its cell fate guardian role in sinoatrial node development.

机构信息

Key Laboratory of Stem Cell Engineering and Regenerative Medicine of Fujian Province University, Fujian Medical University, Fuzhou, Fujian Province, 350122, PR China.

Department of Cell and Molecular Biology, Tulane University, New Orleans, LA, 70118, USA.

出版信息

Commun Biol. 2024 Mar 29;7(1):385. doi: 10.1038/s42003-024-06039-2.

Abstract

Shox2 plays a vital role in the morphogenesis and physiological function of the sinoatrial node (SAN), the primary cardiac pacemaker, manifested by the formation of a hypoplastic SAN and failed differentiation of pacemaker cells in Shox2 mutants. Shox2 and Nkx2-5 are co-expressed in the developing SAN and regulate the fate of the pacemaker cells through a Shox2-Nkx2-5 antagonistic mechanism. Here we show that simultaneous inactivation of Nkx2-5 in the SAN of Shox2 mutants (dKO) rescued the pacemaking cell fate but not the hypoplastic defects, indicating uncoupling of SAN cell fate determination and morphogenesis. Single-cell RNA-seq revealed that the presumptive SAN cells of Shox2 mutants failed to activate pacemaking program but remained in a progenitor state preceding working myocardium, while both wildtype and dKO SAN cells displayed normal pacemaking cell fate with similar cellular state. Shox2 thus acts as a safeguard but not a determinant to ensure the pacemaking cell fate through the Shox2-Nkx2-5 antagonistic mechanism, which is segregated from its morphogenetic regulatory function in SAN development.

摘要

Shox2 在窦房结(SAN)的形态发生和生理功能中起着至关重要的作用,SAN 是心脏的主要起搏器,Shox2 突变体表现为形成发育不良的 SAN 和起搏细胞分化失败。Shox2 和 Nkx2-5 在发育中的 SAN 中共同表达,并通过 Shox2-Nkx2-5 拮抗机制调节起搏细胞的命运。在这里,我们表明在 Shox2 突变体的 SAN 中同时失活 Nkx2-5(dKO)挽救了起搏细胞命运,但不能挽救发育不良的缺陷,表明 SAN 细胞命运决定和形态发生的解耦。单细胞 RNA-seq 显示,Shox2 突变体的假定 SAN 细胞未能激活起搏程序,而是仍然处于工作心肌之前的祖细胞状态,而野生型和 dKO SAN 细胞均具有正常的起搏细胞命运,具有相似的细胞状态。因此,Shox2 通过 Shox2-Nkx2-5 拮抗机制作为一种保障而非决定因素来确保起搏细胞命运,这与其在 SAN 发育中的形态发生调节功能分离。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6b4/10980793/c109b8e1663f/42003_2024_6039_Fig1_HTML.jpg

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