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一个远端上游元件调控大鼠聚集蛋白聚糖基因的组织特异性表达。

A remote upstream element regulates tissue-specific expression of the rat aggrecan gene.

作者信息

Doege Kurt, Hall Laura B, McKinnon Willam, Chen Lan, Stephens Don T, Garrison Katherine

机构信息

Department of Biochemistry, College of Medicine, University of South Florida, Tampa, Florida 33612, USA.

出版信息

J Biol Chem. 2002 Apr 19;277(16):13989-97. doi: 10.1074/jbc.M109627200. Epub 2002 Feb 7.

Abstract

The regulation of chondrogenesis and of the genes expressed as markers of chondrocyte differentiation is poorly understood. The hyaluronan-binding proteoglycan aggrecan is an essential and specific component of cartilage, but the aggrecan proximal promoter is expressed in an unregulated fashion in vitro. DNA comprising the rat aggrecan gene (83 kb including the 30-kb first intron) was surveyed for active elements, which would impart selective expression to the aggrecan promoter in transfection assays in vitro. A 4.7-kb DNA fragment (P3) with cell-specific enhancer activity was discovered approximately 12 kb upstream of the transcription start site; this active DNA fragment is position- and orientation-independent, and strongly stimulates aggrecan promoter expression in chondrocytes, while weakly suppressing transcription in fibroblasts. Most of this activity has been localized to P3-7, a 2.3-kb internal fragment of P3. Another enhancer element (A23), which is not tissue-specific, was discovered about 70 kb downstream of the transcription start site. Several lines of transgenic mice were created using combinations of these DNA elements to drive the lacZ reporter gene. Neither a short (900 bp) nor a long (3.7 kb) promoter alone showed detectable expression in 14.5-day embryos, whereas placing the P3 tissue-specific enhancer together with P0 gave strong expression restricted to embryonic cartilage of transgenic mice. The A23 downstream enhancer in conjunction with P0 did not confer expression. This is the first report of a gene control region which confers authentic tissue-specific regulation of aggrecan in vitro or in vivo and should greatly facilitate understanding the coordinate regulation of chondrocytic genes.

摘要

软骨生成以及作为软骨细胞分化标志物所表达基因的调控机制目前还知之甚少。透明质酸结合蛋白聚糖聚集蛋白聚糖是软骨的一种重要且特异的成分,但聚集蛋白聚糖近端启动子在体外以不受调控的方式表达。对包含大鼠聚集蛋白聚糖基因(83 kb,包括30 kb的首个内含子)的DNA进行活性元件检测,这些活性元件在体外转染实验中可使聚集蛋白聚糖启动子实现选择性表达。在转录起始位点上游约12 kb处发现了一个具有细胞特异性增强子活性的4.7 kb DNA片段(P3);这个活性DNA片段与位置和方向无关,能强烈刺激软骨细胞中聚集蛋白聚糖启动子的表达,同时在成纤维细胞中微弱抑制转录。这种活性的大部分已定位到P3 - 7,即P3的一个2.3 kb内部片段。在转录起始位点下游约70 kb处发现了另一个非组织特异性的增强子元件(A23)。使用这些DNA元件的组合构建了几条转基因小鼠品系来驱动lacZ报告基因。单独的短启动子(900 bp)和长启动子(3.7 kb)在14.5天胚胎中均未显示可检测到的表达,而将P3组织特异性增强子与P0一起使用时,转基因小鼠的胚胎软骨呈现出强烈的特异性表达。A23下游增强子与P0结合未赋予表达。这是关于一个基因控制区域的首次报道,该区域在体外或体内赋予聚集蛋白聚糖真实的组织特异性调控,应极大地有助于理解软骨细胞基因的协同调控。

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