Farooqui-Kabir Saleha R, Diss James K J, Henderson Deborah, Marber Michael S, Latchman David S, Budhram-Mahadeo Vishwanie, Heads Richard J
Cardiovascular Division, King's College London School of Medicine, Department of Cardiology, The Rayne Institute, St Thomas's Hospital, Lambeth Palace Road, London, UK.
Cell Stress Chaperones. 2008 Sep;13(3):297-312. doi: 10.1007/s12192-008-0028-2. Epub 2008 Mar 27.
The Brn-3 family of transcription factors play a critical role in regulating expression of genes that control cell fate, including the small heat shock protein Hsp27. The aim of this study was to investigate the relationship between Brn-3a and Brn-3b and Hsp27 expression in the developing rodent heart. Brn-3a and Brn-3b were detected from embryonic days 9.5-10.5 (E9.5-E10.5) in the mouse heart, with significant increases seen later during development. Two isoforms (long and short) of each protein were detected during embryogenesis and postnatally. Brn-3a messenger RNA (mRNA) and protein were localized by E13.0 to the atrio-ventricular (AV) valve cushions and leaflets, outflow tract (OFT), epicardium and cardiac ganglia. By E14.5, Brn-3a was also localised to the septa and compact ventricular myocardium. An increase in expression of the long Brn-3a(l) isoform between E17 and adult coincided with a decrease in expression of Brn-3b(l) and a marked increase in expression of Hsp27. Hearts from Brn-3a-/- mice displayed a partially penetrant phenotype marked by thickening of the endocardial cushions and AV valve leaflets and hypoplastic ventricular myocardium. Loss of Brn-3a was correlated with a compensatory increase in Brn-3b and GATA3 mRNA but no change in Hsp27 mRNA. Reporter assays in isolated cardiomyocytes demonstrated that both Brn-3a and Brn-3b activate the hsp27 promoter via a consensus Brn-3-binding site. Therefore, Brn-3 POU factors may play an important role in the development and maintenance of critical cell types and structures within the heart, in part via developmental regulation of myocardial Hsp27 expression. Furthermore, Brn-3a may be necessary for correct valve and myocardial remodelling and maturation.
转录因子Brn-3家族在调控控制细胞命运的基因(包括小热休克蛋白Hsp27)的表达中发挥关键作用。本研究的目的是探讨发育中的啮齿动物心脏中Brn-3a和Brn-3b与Hsp27表达之间的关系。在小鼠心脏胚胎期第9.5至10.5天(E9.5-E10.5)检测到Brn-3a和Brn-3b,在发育后期显著增加。在胚胎期和出生后检测到每种蛋白质的两种同工型(长型和短型)。到E13.0时,Brn-3a信使核糖核酸(mRNA)和蛋白质定位于房室(AV)瓣膜垫和小叶、流出道(OFT)、心外膜和心脏神经节。到E14.5时,Brn-3a也定位于隔膜和致密的心室心肌。E17至成年期长型Brn-3a(l)同工型表达增加,同时Brn-3b(l)表达减少,Hsp27表达显著增加。Brn-3a基因敲除小鼠的心脏表现出部分显性的表型,其特征是心内膜垫和AV瓣膜小叶增厚以及心室心肌发育不全。Brn-3a的缺失与Brn-3b和GATA3 mRNA的代偿性增加相关,但Hsp27 mRNA无变化。在分离的心肌细胞中进行的报告基因检测表明,Brn-3a和Brn-3b均通过一个共有Brn-3结合位点激活hsp27启动子。因此,Brn-3 POU因子可能在心脏内关键细胞类型和结构的发育和维持中发挥重要作用,部分是通过对心肌Hsp27表达的发育调控。此外,Brn-3a对于正确的瓣膜和心肌重塑及成熟可能是必需的。