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毛囊角蛋白中间丝基因启动子的调控

Regulation of a hair follicle keratin intermediate filament gene promoter.

作者信息

Dunn S M, Keough R A, Rogers G E, Powell B C

机构信息

Department of Animal Science, University of Adelaide, Waite Campus, Glen Osmond, South Australia 5064, Australia.

出版信息

J Cell Sci. 1998 Dec;111 ( Pt 23):3487-96. doi: 10.1242/jcs.111.23.3487.

Abstract

During hair growth, cortical cells emerging from the proliferative follicle bulb rapidly undergo a differentiation program and synthesise large amounts of hair keratin proteins. To identify some of the controls that specify expression of hair genes we have defined the minimal promoter of the wool keratin intermediate filament gene K2.10. The region of this gene spanning nucleotides -350 to +53 was sufficient to direct expression of the lacZ gene to the follicle cortex of transgenic mice but deletion of nucleotides -350 to -150 led to a complete loss of promoter activity. When a four base substitution mutation was introduced into the minimal functional promoter at the binding site for lymphoid enhancer factor 1 (LEF-1), promoter activity in transgenic mice was decreased but specificity was not affected. To investigate the interaction of trans-acting factors within the minimal K2.10 promoter we performed DNase I footprinting analyses and electrophoretic mobility shift assays. In addition to LEF-1, Sp1, AP2-like and NF1-like proteins bound to the promoter. The Sp1 and AP2-like proteins bound sequences flanking the LEF-1 binding site whereas the NF1-like proteins bound closer to the transcription start site. We conclude that the LEF-1 binding site is an enhancer element of the K2.10 promoter in the hair follicle cortex and that factors other than LEF-1 regulate promoter tissue- and differentiation-specificity.

摘要

在毛发生长过程中,从增殖性毛囊球部产生的皮质细胞迅速经历分化程序并合成大量毛发角蛋白。为了确定一些指定毛发基因表达的调控因素,我们定义了羊毛角蛋白中间丝基因K2.10的最小启动子。该基因跨越核苷酸-350至+53的区域足以将lacZ基因的表达导向转基因小鼠的毛囊皮质,但删除核苷酸-350至-150会导致启动子活性完全丧失。当在淋巴增强因子1(LEF-1)的结合位点对最小功能启动子引入四碱基取代突变时,转基因小鼠中的启动子活性降低,但特异性不受影响。为了研究最小K2.10启动子内反式作用因子的相互作用,我们进行了DNA酶I足迹分析和电泳迁移率变动分析。除了LEF-1之外,Sp1、AP2样和NF1样蛋白也与启动子结合。Sp1和AP2样蛋白结合在LEF-1结合位点两侧的序列,而NF1样蛋白结合得更靠近转录起始位点。我们得出结论,LEF-1结合位点是毛囊皮质中K2.10启动子的增强子元件,并且除LEF-1之外的因子调节启动子的组织和分化特异性。

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