Lin Jing, Yang Qingyuan, Yan Zhe, Markowitz Joseph, Wilder Paul T, Carrier France, Weber David J
Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine, Baltimore, Maryland 21201, USA.
J Biol Chem. 2004 Aug 6;279(32):34071-7. doi: 10.1074/jbc.M405419200. Epub 2004 Jun 3.
S100 calcium-binding proteins such as S100B are elevated in primary malignant melanoma and are used as markers for this and numerous other cancers. Wild-type p53 protein levels are relatively low in these cancer cells (i.e. when compared with cells without S100B) but are elevated when RNA antisense to S100B is introduced. This result implicates S100B in the down-regulation of p53 and is consistent with the large decreases in p53 protein levels observed previously in transient co-transfections of p53 and S100B (Lin, J., Blake, M., Tang, C., Zimmer, D., Rustandi, R. R., Weber, D. J., and Carrier, F. (2001) J. Biol. Chem. 276, 35037-35041). Down-regulation of p53 in primary malignant melanoma cells is likely the result of a direct interaction with S100B, which was observed by co-immunoprecipitation experiments. Furthermore, p53 binds regions of the S100B promoter, one of which matches the 20-nucleotide p53-binding consensus DNA sequence perfectly. Therefore, when p53 levels increase, it contributes to its own demise by up-regulating the transcription of S100B as part of a negative feedback loop. This is analogous to what is found for another protein that down-regulates p53, namely hdm2 (human double mutant 2).
诸如S100B之类的S100钙结合蛋白在原发性恶性黑色素瘤中水平升高,并被用作该癌症及许多其他癌症的标志物。在这些癌细胞中,野生型p53蛋白水平相对较低(即与没有S100B的细胞相比),但当引入与S100B反义的RNA时,其水平会升高。这一结果表明S100B参与了p53的下调,并且与之前在p53和S100B的瞬时共转染实验中观察到的p53蛋白水平的大幅下降相一致(Lin, J., Blake, M., Tang, C., Zimmer, D., Rustandi, R. R., Weber, D. J., and Carrier, F. (2001) J. Biol. Chem. 276, 35037 - 35041)。原发性恶性黑色素瘤细胞中p53的下调可能是与S100B直接相互作用的结果,这在共免疫沉淀实验中得到了观察。此外,p53结合S100B启动子区域,其中一个区域与20个核苷酸的p53结合共有DNA序列完美匹配。因此,当p53水平升高时,它会通过上调S100B的转录作为负反馈回路的一部分来促进自身的降解。这与另一种下调p53的蛋白,即hdm2(人双突变2)的情况类似。