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正常组织和肿瘤组织中p21WAF1/CIP1表达的拓扑学调控

Topological control of p21WAF1/CIP1 expression in normal and neoplastic tissues.

作者信息

el-Deiry W S, Tokino T, Waldman T, Oliner J D, Velculescu V E, Burrell M, Hill D E, Healy E, Rees J L, Hamilton S R

机构信息

Oncology Center, Johns Hopkins University School of Medicine, Baltimore, Maryland 21231, USA.

出版信息

Cancer Res. 1995 Jul 1;55(13):2910-9.

PMID:7796420
Abstract

The p53-regulated gene product p21WAF1/CIP1 is the prototype of a family of small proteins that negatively regulate the cell cycle. To learn more about p21WAF1/CIP1 regulation in vivo, monoclonal antibodies were developed for immunohistochemistry. These revealed that p21WAF1/CIP1 expression followed radiation-induced DNA damage in human skin in a pattern consistent with its regulation by p53. A detailed comparison of the human, rat, and mouse p21WAF1/CIP1 promoter sequences revealed that this induction was probably mediated by conserved p53-binding sites upstream of the transcription start site. In unirradiated tissues, p21WAF1/CIP1 expression was apparently independent of p53 and was observed in a variety of cell types. Moreover, there was a striking compartmentalization of p21WAF1/CIP1 expression throughout the gastrointestinal tract that correlated with proliferation rather than differentiation. As epithelial cells migrated up the crypts, the Ki67-expressing proliferating compartment near the crypt base ended abruptly, with the coincident appearance of a nonproliferating compartment expressing p21WAF1/CIP1. In colonic neoplasms, this distinct compartmentalization was largely abrogated. Cell cycle inhibitors are thus subject to precise topological control, and escape from this regulation may be a critical feature of neoplastic transformation.

摘要

p53调控的基因产物p21WAF1/CIP1是一类对细胞周期起负调控作用的小蛋白家族的原型。为了更深入了解p21WAF1/CIP1在体内的调控机制,人们开发了用于免疫组织化学的单克隆抗体。这些抗体显示,p21WAF1/CIP1的表达在人类皮肤中随着辐射诱导的DNA损伤而出现,其模式与其受p53调控相一致。对人类、大鼠和小鼠p21WAF1/CIP1启动子序列的详细比较表明,这种诱导可能是由转录起始位点上游保守的p53结合位点介导的。在未受辐射的组织中,p21WAF1/CIP1的表达显然独立于p53,并且在多种细胞类型中都能观察到。此外,在整个胃肠道中,p21WAF1/CIP1的表达存在明显的分区现象,这与增殖而非分化相关。随着上皮细胞沿隐窝向上迁移,靠近隐窝底部表达Ki67的增殖区突然终止,同时出现了一个表达p21WAF1/CIP1的非增殖区。在结肠肿瘤中,这种明显的分区现象在很大程度上被消除了。因此,细胞周期抑制剂受到精确的拓扑控制,而逃避这种调控可能是肿瘤转化的一个关键特征。

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