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ZBP-89介导丁酸盐对基因表达的调控。

ZBP-89 mediates butyrate regulation of gene expression.

作者信息

Merchant Juanita L, Bai Longchuan, Okada Morihiro

机构信息

Department of Internal Medicine, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

J Nutr. 2003 Jul;133(7 Suppl):2456S-2460S. doi: 10.1093/jn/133.7.2456S.

Abstract

Inducible p53-independent regulation of the cyclin-dependent kinase inhibitor p21(Waf1) transcription is mediated through its proximal GC-rich sites. Prior studies have shown that Sp1, Sp3 and the histone acetyltransferase coactivator p300 are components of the complexes that bind to these sites. Although Sp1 and Sp3 collaborate with p300, a direct interaction between Sp1 and p300 does not occur. Zinc-finger binding protein-89 (ZBP-89, also known as BFCOL1, BERF-1 and ZNF-148) is a Krüppel-type zinc-finger transcription factor that binds to the same GC-rich sequences as Sp1. We sought to determine whether ZBP-89 is a target of p300 during butyrate induction of p21(Waf1). This review summarizes the evidence that supports a crucial role for ZBP-89 in butyrate regulation of p21(Waf1). Adenovirus-mediated expression of ZBP-89 in HT-29 cells reveals that ZBP-89 potentiates butyrate induction of endogenous p21(Waf1) gene expression. DNA-protein interaction assays demonstrate that Sp1, Sp3 and ZBP-89 bind the p21(Waf1) promoter at -245 to -215. Coprecipitation assays reveal that p300 preferentially binds to the N-terminus of ZBP-89. ZBP-89 also induces p21(Waf1) through stabilization of p53. Although ZBP-89 binds mutant and wild-type p53, only wild-type p53 is stabilized. Moreover, mutant p53 shifts the subnuclear location of ZBP-89 to the nuclear periphery, which is a domain rich in heterochromatin. This finding led to the conclusion that mutant p53 exerts a dominant negative effect on ZBP-89. We propose that gene silencing by mutant p53 might be mediated by sequestering ZBP-89 within heterochromatin regions at the nuclear periphery. Overall, ZBP-89 is a butyrate-regulated coactivator of p53 and is able to induce p21(Waf1) gene expression through both p53-dependent and -independent mechanisms to inhibit cell growth.

摘要

细胞周期蛋白依赖性激酶抑制剂p21(Waf1)转录的可诱导性p53非依赖性调节是通过其近端富含GC的位点介导的。先前的研究表明,Sp1、Sp3和组蛋白乙酰转移酶共激活因子p300是与这些位点结合的复合物的组成成分。尽管Sp1和Sp3与p300协同作用,但Sp1和p300之间不会发生直接相互作用。锌指结合蛋白89(ZBP-89,也称为BFCOL1、BERF-1和ZNF-148)是一种Krüppel型锌指转录因子,它与Sp1结合相同的富含GC的序列。我们试图确定在丁酸盐诱导p21(Waf1)过程中ZBP-89是否是p300的作用靶点。这篇综述总结了支持ZBP-89在丁酸盐调节p21(Waf1)中起关键作用的证据。腺病毒介导的ZBP-89在HT-29细胞中的表达表明,ZBP-89增强了丁酸盐对内源性p21(Waf1)基因表达的诱导作用。DNA-蛋白质相互作用分析表明,Sp1、Sp3和ZBP-89在-245至-215处结合p21(Waf1)启动子。共沉淀分析表明,p300优先结合ZBP-89的N端。ZBP-89还通过稳定p53来诱导p21(Waf1)。尽管ZBP-89结合突变型和野生型p53,但只有野生型p53被稳定。此外,突变型p53将ZBP-89的亚核定位转移到核周边,这是一个富含异染色质的区域。这一发现得出结论,突变型p53对ZBP-89发挥显性负效应。我们提出,突变型p53导致的基因沉默可能是通过将ZBP-89隔离在核周边的异染色质区域来介导的。总体而言,ZBP-89是一种受丁酸盐调节的p53共激活因子,能够通过p53依赖性和非依赖性机制诱导p21(Waf1)基因表达以抑制细胞生长。

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