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与野生型p53相比,来自人类肿瘤的突变型p53分子中Ser-15和Ser-392位点的磷酸化发生了改变。

Phosphorylation at Ser-15 and Ser-392 in mutant p53 molecules from human tumors is altered compared to wild-type p53.

作者信息

Ullrich S J, Sakaguchi K, Lees-Miller S P, Fiscella M, Mercer W E, Anderson C W, Appella E

机构信息

Laboratory of Cell Biology, National Cancer Institute, Bethesda, MD 20892.

出版信息

Proc Natl Acad Sci U S A. 1993 Jul 1;90(13):5954-8. doi: 10.1073/pnas.90.13.5954.

Abstract

The product of the p53 gene suppresses cell growth and plays a critical role in suppressing development of human tumors. p53 protein binds DNA, activates transcription, and can be phosphorylated at N- and C-terminal sites. Previously, wild-type p53 was shown to be hyperphosphorylated compared to mutant p53 during p53-mediated growth arrest in vivo. Here we show that Ser-15 and Ser-9 in the N-terminal transactivation domain of wild-type human p53 are phosphorylated in vivo in cells derived from the human glioblastoma line T98G. In [Ile237]p53 and [Ala143]p53, two natural p53 mutants from human tumors that are defective for activation of transcription, phosphorylation at Ser-15 was reduced and phosphorylation at Ser-392 was increased compared to wild-type p53. No change was observed at Ser-9. [His273]p53, a third mutant, had a phosphorylation state similar to that of wild-type p53. We suggest that phosphorylation of Ser-15 may depend on the ability of p53 to adopt a wild-type conformation and may contribute to p53's ability to block cell growth.

摘要

p53基因的产物可抑制细胞生长,并在抑制人类肿瘤发生中起关键作用。p53蛋白可结合DNA、激活转录,且可在N端和C端位点被磷酸化。此前研究表明,在体内p53介导的生长停滞过程中,与突变型p53相比,野生型p53会发生过度磷酸化。在此我们发现,在源自人胶质母细胞瘤细胞系T98G的细胞中,野生型人p53的N端反式激活结构域中的Ser-15和Ser-9在体内会被磷酸化。在[Ile237]p53和[Ala143]p53(来自人类肿瘤的两个天然p53突变体,转录激活功能存在缺陷)中,与野生型p53相比,Ser-15的磷酸化减少,而Ser-392的磷酸化增加。Ser-9未观察到变化。第三个突变体[His273]p53的磷酸化状态与野生型p53相似。我们认为,Ser-15的磷酸化可能取决于p53采用野生型构象的能力,并且可能有助于p53阻断细胞生长的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8018/46845/1a9f16eea83c/pnas01470-0086-a.jpg

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