Lepore John J, Cappola Thomas P, Mericko Patricia A, Morrisey Edward E, Parmacek Michael S
Molecular Cardiology Research Center, Department of Medicine, University of Pennsylvania Health System, Philadelphia 19104, USA.
Arterioscler Thromb Vasc Biol. 2005 Feb;25(2):309-14. doi: 10.1161/01.ATV.0000152725.76020.3c. Epub 2004 Dec 9.
Previous studies suggested the zinc-finger transcription factor GATA-6 inhibits vascular smooth muscle cell (VSMC) proliferation and promotes the contractile VSMC phenotype. The objective of this study was to identify bona fide target genes regulated by GATA-6 in VSMCs.
Microarray analyses were performed comparing mRNA from rat aortic smooth muscle cells (SMCs) infected with either adenovirus encoding a dominant-negative GATA-6/engrailed fusion protein or with control adenovirus. These studies identified 122 genes differentially expressed by at least 2-fold, including multiple genes involved in cell-cell signaling and cell-matrix interactions. Among these, endothelin-1 and the angiotensin type(1a) (AT(1a)) receptor are known to be induced in VSMCs in response to inflammatory stimuli and to be expressed in a GATA-dependent manner in cardiac myocytes in response to hemodynamic stress. Consistent with these findings, the endothelin-1 and AT(1a) receptor promoters were activated by forced expression of GATA-6 and repressed by forced expression of GATA-6/engrailed. Surprisingly, genes encoding SMC contractile proteins were not altered, and myocardin-induced SMC differentiation was not impaired in GATA-6(-/-) embryonic stem cells.
These data demonstrate that in VSMCs, GATA-6 regulates a set of genes associated with synthetic SMC functions and suggest that this transcriptional pathway may be independent from myocardin-induced SMC differentiation. An unbiased microarray screen of genes regulated by GATA-6 in VSMCs identified multiple genes involved in cell-cell signaling and cell-matrix interactions. The endothelin-1 and the AT1a receptor genes were shown to be direct GATA-6 target genes. These data suggest that GATA-6 plays a role in promoting synthetic functions in VSMCs.
以往研究表明,锌指转录因子GATA-6可抑制血管平滑肌细胞(VSMC)增殖并促进收缩型VSMC表型。本研究的目的是鉴定VSMC中受GATA-6调控的真正靶基因。
进行微阵列分析,比较感染编码显性负性GATA-6/engrailed融合蛋白的腺病毒或对照腺病毒的大鼠主动脉平滑肌细胞(SMC)的mRNA。这些研究确定了122个差异表达至少2倍的基因,包括多个参与细胞间信号传导和细胞-基质相互作用的基因。其中,内皮素-1和血管紧张素1a(AT(1a))受体已知在VSMC中响应炎症刺激而被诱导,并在心肌细胞中响应血流动力学应激以GATA依赖的方式表达。与这些发现一致,内皮素-1和AT(1a)受体启动子在GATA-6的强制表达下被激活,并在GATA-6/engrailed的强制表达下被抑制。令人惊讶的是,编码SMC收缩蛋白的基因没有改变,并且在GATA-6(-/-)胚胎干细胞中,心肌素诱导的SMC分化没有受损。
这些数据表明,在VSMC中,GATA-6调控一组与合成型SMC功能相关的基因,并提示该转录途径可能独立于心肌素诱导的SMC分化。对VSMC中受GATA-6调控的基因进行的无偏微阵列筛选鉴定了多个参与细胞间信号传导和细胞-基质相互作用的基因。内皮素-1和AT1a受体基因被证明是直接的GATA-6靶基因。这些数据表明GATA-6在促进VSMC的合成功能中起作用。