SWI/SNF 催化亚基在维持成年心脏血管内皮细胞中的功能冗余。

Functional redundancy of SWI/SNF catalytic subunits in maintaining vascular endothelial cells in the adult heart.

机构信息

120 Mason Farm Rd, Genetic Medicine Bldg, Room 5060, Chapel Hill, NC 27516-7264, USA.

出版信息

Circ Res. 2012 Aug 17;111(5):e111-22. doi: 10.1161/CIRCRESAHA.112.265587. Epub 2012 Jun 27.

Abstract

RATIONALE

Mating type switching/sucrose non-fermenting (SWI/SNF) chromatin-remodeling complexes utilize either BRG1 or BRM as a catalytic subunit to alter nucleosome position and regulate gene expression. BRG1 is required for vascular endothelial cell (VEC) development and embryonic survival, whereas BRM is dispensable.

OBJECTIVE

To circumvent embryonic lethality and study Brg1 function in adult tissues, we used conditional gene targeting. To evaluate possible Brg1-Brm redundancy, we analyzed Brg1 mutant mice on wild-type and Brm-deficient backgrounds.

METHODS AND RESULTS

The inducible Mx1-Cre driver was used to mutate Brg1 in adult mice. These conditional-null mutants exhibited a tissue-specific phenotype and unanticipated functional compensation between Brg1 and Brm. Brg1 single mutants were healthy and had a normal lifespan, whereas Brg1/Brm double mutants exhibited cardiovascular defects and died within 1 month. BRG1 and BRM were required for the viability of VECs but not other cell types where both genes were also knocked out. The VEC phenotype was most evident in the heart, particularly in the microvasculature of the outer myocardium, and was recapitulated in primary cells ex vivo. VEC death resulted in vascular leakage, cardiac hemorrhage, secondary death of cardiomyocytes due to ischemia, and ventricular dissections.

CONCLUSIONS

BRG1-catalyzed SWI/SNF complexes are particularly important in cardiovascular tissues. However, in contrast to embryonic development, in which Brm does not compensate, Brg1 is required in adult VECs only when Brm is also mutated. These results demonstrate for the first time that Brm functionally compensates for Brg1 in vivo and that there are significant changes in the relative importance of BRG1- and BRM-catalyzed SWI/SNF complexes during the development of an essential cell lineage.

摘要

背景

交配型转换/蔗糖非发酵(SWI/SNF)染色质重塑复合物利用 BRG1 或 BRM 作为催化亚基来改变核小体位置并调节基因表达。BRG1 是血管内皮细胞(VEC)发育和胚胎存活所必需的,而 BRM 则是可有可无的。

目的

为了规避胚胎致死并研究 Brg1 在成年组织中的功能,我们使用了条件性基因靶向。为了评估可能存在的 Brg1-Brm 冗余性,我们在野生型和 Brm 缺失背景下分析了 Brg1 突变小鼠。

方法和结果

使用诱导型 Mx1-Cre 驱动来突变成年小鼠中的 Brg1。这些条件性缺失突变体表现出组织特异性表型,并在 Brg1 和 Brm 之间存在意外的功能补偿。Brg1 单突变体健康且寿命正常,而 Brg1/Brm 双突变体则表现出心血管缺陷,并在 1 个月内死亡。BRG1 和 BRM 对于 VEC 的存活是必需的,但对于其他也敲除了这两个基因的细胞类型则不是必需的。VEC 表型在外周心肌的心脏和微血管中最为明显,并在体外原代细胞中得到了重现。VEC 死亡导致血管渗漏、心脏出血、由于缺血导致的心肌细胞继发性死亡以及心室分离。

结论

BRG1 催化的 SWI/SNF 复合物在心血管组织中尤为重要。然而,与胚胎发育不同,在胚胎发育中 Brm 不能补偿,只有当 Brm 也发生突变时,Brg1 在成年 VEC 中才是必需的。这些结果首次证明,在体内 Brm 可以在功能上补偿 Brg1,并且在一个重要细胞谱系的发育过程中,BRG1- 和 BRM- 催化的 SWI/SNF 复合物的相对重要性发生了显著变化。

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