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Pax6对眼细胞中基因表达的调控:晶状体中晶状体蛋白组织特异性表达的一个实例。

Regulation of gene expression by Pax6 in ocular cells: a case of tissue-preferred expression of crystallins in lens.

作者信息

Cvekl Ales, Yang Ying, Chauhan Bharesh K, Cveklova Kveta

机构信息

The Department of Ophthalmology, Albert Einstein College of Medicine, Bronx, NY 10461, USA.

出版信息

Int J Dev Biol. 2004;48(8-9):829-44. doi: 10.1387/ijdb.041866ac.

Abstract

Lens development is an excellent model for genetic and biochemical studies of embryonic induction, cell cycle regulation, cellular differentiation and signal transduction. Differentiation of lens is characterized by lens-preferred expression and accumulation of water-soluble proteins, crystallins. Crystallins are required for light transparency, refraction and maintenance of lens integrity. Here, we review mechanisms of lens-preferred expression of crystallin genes by employing synergism between developmentally regulated DNA-binding transcription factors: Pax6, c-Maf, MafA/L-Maf, MafB, NRL, Sox2, Sox1, RARbeta/RXRbeta, RORalpha, Prox1, Six3, gammaFBP-B and HSF2. These factors are differentially expressed in lens precursor cells, lens epithelium and primary and secondary lens fibers. They exert their function in combination with ubiquitously expressed factors (e.g. AP-1, CREB, pRb, TFIID and USF) and co-activators/chromatin remodeling proteins (e.g. ASC-2 and CBP/p300). A special function belongs to Pax6, a paired domain and homeodomain-containing protein, which is essential for lens formation. Pax6 is expressed in lens progenitor cells before the onset of crystallin expression and it serves as an important regulatory factor required for expression of c-Maf, MafA/L-Maf, Six3, Prox1 and retinoic acid signaling both in lens precursor cells and the developing lens. The roles of these factors are illustrated by promoter studies of mouse alphaA-, alphaB-, gammaF- and guinea pig zeta-crystallins. Pax6 forms functional complexes with a number of transcription factors including the retinoblastoma protein, pRb, MafA, Mitf and Sox2. We present novel data showing that pRb antagonizes Pax6-mediated activation of the alphaA-crystallin promoter likely by inhibiting binding of Pax6 to DNA.

摘要

晶状体发育是胚胎诱导、细胞周期调控、细胞分化和信号转导的遗传与生化研究的优秀模型。晶状体的分化特征在于晶状体特异性表达和水溶性蛋白质(晶状体蛋白)的积累。晶状体蛋白对于光的透明度、折射以及晶状体完整性的维持是必需的。在此,我们通过利用发育调控的DNA结合转录因子之间的协同作用,综述晶状体蛋白基因晶状体特异性表达的机制:Pax6、c-Maf、MafA/L-Maf、MafB、NRL、Sox2、Sox1、RARβ/RXRβ、RORα、Prox1、Six3、γFBP-B和HSF2。这些因子在晶状体前体细胞、晶状体上皮以及初级和次级晶状体纤维中差异表达。它们与普遍表达的因子(如AP-1、CREB、pRb、TFIID和USF)以及共激活因子/染色质重塑蛋白(如ASC-2和CBP/p300)共同发挥作用。Pax6具有特殊功能,它是一种含有配对结构域和同源结构域的蛋白质,对晶状体形成至关重要。Pax6在晶状体蛋白表达开始之前就在晶状体祖细胞中表达,并且它是晶状体前体细胞和发育中的晶状体中c-Maf、MafA/L-Maf、Six3、Prox1表达以及视黄酸信号传导所需的重要调节因子。这些因子的作用通过对小鼠αA-、αB-、γF-晶状体蛋白和豚鼠ζ-晶状体蛋白的启动子研究得以阐明。Pax6与许多转录因子形成功能复合物,包括视网膜母细胞瘤蛋白pRb、MafA、Mitf和Sox2。我们展示了新的数据,表明pRb可能通过抑制Pax6与DNA的结合来拮抗Pax6介导的αA-晶状体蛋白启动子的激活。

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