癌细胞中的局灶黏附激酶和p53信号。

Vita M Golubovskaya, William G Cance
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引用次数: 101

摘要

人类癌症的发展是一个肿瘤细胞运动、侵袭和远处转移的过程,这要求癌细胞能够在非锚定条件下的凋亡压力下存活。与肿瘤侵袭和存活相关的关键酪氨酸激酶之一是局灶黏附激酶(FAK)。FAK首次从人类肿瘤中分离出来,发现FAK mRNA在侵袭性和转移性人类乳腺癌和结肠癌样本中表达上调。最近,克隆了FAK启动子,发现它含有p53结合位点。p53抑制FAK转录,最近的数据显示FAK和p53蛋白在体外和体内直接结合。本文综述了FAK和p53的结构、与FAK相互作用的蛋白、FAK在肿瘤发生和FAK-p53相关治疗中的作用。本文综述了FAK信号转导途径,特别是FAK和p53信号转导,揭示了细胞生物学的新范式,将细胞外基质信号转导到细胞核。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Focal adhesion kinase and p53 signaling in cancer cells.

The progression of human cancer is characterized by a process of tumor cell motility, invasion, and metastasis to distant sites, requiring the cancer cells to be able to survive the apoptotic pressures of anchorage-independent conditions. One of the critical tyrosine kinases linked to these processes of tumor invasion and survival is the focal adhesion kinase (FAK). FAK was first isolated from human tumors, and FAK mRNA was found to be upregulated in invasive and metastatic human breast and colon cancer samples. Recently, the FAK promoter was cloned, and it has been found to contain p53-binding sites. p53 inhibits FAK transcription, and recent data show direct binding of FAK and p53 proteins in vitro and in vivo. The structure of FAK and p53, proteins interacting with FAK, and the role of FAK in tumorigenesis and FAK-p53-related therapy are reviewed. This review focuses on FAK signal transduction pathways, particularly on FAK and p53 signaling, revealing a new paradigm in cell biology, linking signaling from the extracellular matrix to the nucleus.

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