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Sp3转录因子参与角质形成细胞分化过程中p21Cip1/WAF1的诱导。

Involvement of the Sp3 transcription factor in induction of p21Cip1/WAF1 in keratinocyte differentiation.

作者信息

Prowse D M, Bolgan L, Molnár A, Dotto G P

机构信息

Cutaneous Biology Research Center, Massachusetts General Hospital, Charlestown 02129, USA.

出版信息

J Biol Chem. 1997 Jan 10;272(2):1308-14. doi: 10.1074/jbc.272.2.1308.

Abstract

The cyclin-dependent kinase inhibitor p21 is induced in several in vitro terminal differentiation systems as well as in differentiating tissues in vivo. To determine the mechanism responsible for p21 induction during differentiation of mouse primary keratinocytes, we performed a deletion analysis of the p21 promoter. The minimal region of the p21 promoter required for its induction in keratinocyte differentiation consists of a contiguous stretch of 78 base pairs, which contains a GC-rich region as well as the TATA box. We determined that transcription factors Sp1 and Sp3, present in primary keratinocyte nuclear extracts, bind the GC region concomitantly. Expression studies established that both Sp1 and Sp3 activate the p21 promoter, but showed that only Sp3 overexpression enhances promoter inducibility during differentiation. Furthermore, disruption of the GC-rich region dramatically decreases transcription factor binding as well as promoter activity and inducibility upon differentiation. The overexpression of either Sp1 or Sp3 restores the basal activity of the disrupted promoter, but only Sp3 can restore its inducibility. These findings show that both Sp1 and Sp3 can contribute to the basal activity of the p21 promoter, and establish Sp3 as a specific transcription factor involved in the induction of p21 promoter during keratinocyte differentiation.

摘要

细胞周期蛋白依赖性激酶抑制剂p21在几种体外终末分化系统以及体内分化组织中均有诱导表达。为了确定小鼠原代角质形成细胞分化过程中p21诱导的机制,我们对p21启动子进行了缺失分析。p21启动子在角质形成细胞分化中诱导所需的最小区域由一段连续的78个碱基对组成,其中包含一个富含GC的区域以及TATA盒。我们确定,原代角质形成细胞核提取物中的转录因子Sp1和Sp3同时结合GC区域。表达研究表明,Sp1和Sp3均能激活p21启动子,但仅Sp3过表达能增强分化过程中启动子的诱导性。此外,富含GC区域的破坏显著降低了转录因子结合以及启动子活性和分化时的诱导性。Sp1或Sp3的过表达可恢复破坏启动子的基础活性,但只有Sp3能恢复其诱导性。这些发现表明,Sp1和Sp3均可促进p21启动子的基础活性,并确定Sp3是参与角质形成细胞分化过程中p21启动子诱导的特异性转录因子。

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