Dipartimento di Scienze Biologiche ed Ambientali, Facoltà di Scienze MM.FF.NN., Università del Sannio, Via Port'Arsa 11, 82100 Benevento, Italy.
Int J Biochem Cell Biol. 2009 Nov;41(11):2189-203. doi: 10.1016/j.biocel.2009.04.011. Epub 2009 Apr 21.
Retinol-binding protein (RBP4) transports retinol in the circulation from hepatic stores to peripheral tissues. Since little is known regarding the regulation of this gene, we analysed the cis-regulatory sequences of the mouse RBP4 gene. Our data show that transcription of the gene is regulated through a bipartite promoter: a proximal region necessary for basal expression and a distal segment responsible for cAMP-induction. This latter region contains several binding sites for the structural HMGA1 proteins, which are important to promoter regulation. We further demonstrate that HMGA1s play a key role in basal and cAMP-induction of Rbp4 transcription and the RBP4 and HMGA1 genes are coordinately regulated in vitro and in vivo. HMGA1 acts to recruit transcription factors to the RBP4 promoter and we specifically identified p54(nrb)/NonO and protein-associated splicing factor (PSF) as components that interact with this complex. Steroidogenic factor 1 (SF1) or the related liver receptor homologue 1 (LRH-1) are also associated with this complex upon cAMP-induction. Depletion of SF1/LRH-1 by RNA interference resulted in a dramatic loss of cAMP-induction. Collectively, our results demonstrate that basal and cAMP-induced Rbp4 transcription is regulated by a multiprotein complex that is similar to ones that modulate expression of genes of steroid hormone biosynthesis. Since genes related to glucose metabolism are regulated in a similar fashion, this suggests that Rbp4 expression may be regulated as part of a network of pathways relevant to the onset of type 2 diabetes.
视黄醇结合蛋白 4(RBP4)在血液循环中从肝脏储存中向周围组织转运视黄醇。由于人们对该基因的调控知之甚少,因此我们分析了小鼠 RBP4 基因的顺式调控序列。我们的数据表明,该基因的转录受双启动子调控:近端区域是基础表达所必需的,远端区域负责 cAMP 诱导。后者含有几个结构 HMGA1 蛋白的结合位点,这些蛋白对启动子的调控很重要。我们进一步证明,HMGA1s 在 Rbp4 转录的基础和 cAMP 诱导中起关键作用,并且 RBP4 和 HMGA1 基因在体外和体内均协调调节。HMGA1 可募集转录因子至 RBP4 启动子,我们特别鉴定出 p54(nrb)/NonO 和蛋白相关剪接因子(PSF)作为与该复合物相互作用的成分。类固醇生成因子 1(SF1)或相关的肝受体同源物 1(LRH-1)在 cAMP 诱导时也与该复合物相关。通过 RNA 干扰耗尽 SF1/LRH-1 会导致 cAMP 诱导的显著丧失。总之,我们的结果表明,基础和 cAMP 诱导的 Rbp4 转录受多蛋白复合物调控,该复合物类似于调节类固醇激素生物合成基因表达的复合物。由于与葡萄糖代谢相关的基因以类似的方式受到调控,这表明 Rbp4 表达可能作为与 2 型糖尿病发病相关的途径网络的一部分受到调控。