Reproduction, Perinatal and Child Health, Centre de Recherche du Centre Hospitalier Universitaire de Québec, Quebec City, Canada.
PLoS One. 2009 Dec 24;4(12):e8454. doi: 10.1371/journal.pone.0008454.
GATA4 is an essential transcription factor required for the development and function of multiple organs. Despite this important role, our knowledge of how the GATA4 gene is regulated remains limited. To better understand this regulation, we characterized the 5' region of the mouse, rat, and human GATA4 genes.
METHODOLOGY/PRINCIPAL FINDINGS: Using 5' RACE, we identified novel transcription start sites in all three species. GATA4 is expressed as multiple transcripts with varying 5' ends encoded by alternative untranslated first exons. Two of these non-coding first exons are conserved between species: exon 1a located 3.5 kb upstream of the GATA4 ATG site in exon 2, and a second first exon (exon 1b) located 28 kb further upstream. Expression of both mRNA variants was found in all GATA4-expressing organs but with a preference for the exon 1a-containing transcript. The exception was the testis where exon 1a- and 1b-containing transcripts were similarly expressed. In some tissues such as the intestine, alternative transcript expression appears to be regionally regulated. Polysome analysis suggests that both mRNA variants contribute to GATA4 protein synthesis.
CONCLUSIONS/SIGNIFICANCE: Taken together, our results indicate that the GATA4 gene closely resembles the other GATA family members in terms of gene structure where alternative first exon usage appears to be an important mechanism for regulating its tissue- and cell-specific expression.
GATA4 是一种必需的转录因子,对于多个器官的发育和功能至关重要。尽管 GATA4 发挥着重要作用,但我们对其基因调控的了解仍然有限。为了更好地理解这种调控,我们对小鼠、大鼠和人类的 GATA4 基因 5' 区域进行了特征描述。
方法/主要发现:通过 5' RACE,我们在所有三个物种中都鉴定到了新的转录起始位点。GATA4 以不同的 5' 端表达,由不同的非翻译第一外显子编码,这些转录本具有不同的 5' 端。在物种间,两个非编码的第一外显子是保守的:位于外显子 2 的 GATA4 ATG 位点上游 3.5kb 的外显子 1a,以及位于上游 28kb 处的第二个第一外显子(外显子 1b)。所有表达 GATA4 的器官中都发现了这两种 mRNA 变体的表达,但以包含外显子 1a 的转录本为主。例外是睾丸,其中包含外显子 1a 和 1b 的转录本表达相似。在某些组织中,如肠道,替代转录本的表达似乎受到区域调控。多核糖体分析表明,这两种 mRNA 变体都有助于 GATA4 蛋白的合成。
结论/意义:综上所述,我们的结果表明,GATA4 基因在基因结构上与其他 GATA 家族成员非常相似,其中第一外显子的替代使用似乎是调节其组织和细胞特异性表达的重要机制。