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人Gadd45的特性,一种p53调节蛋白。

Characterization of human Gadd45, a p53-regulated protein.

作者信息

Carrier F, Smith M L, Bae I, Kilpatrick K E, Lansing T J, Chen C Y, Engelstein M, Friend S H, Henner W D, Gilmer T M

机构信息

Laboratory of Molecular Pharmacology, DTP, DCT, NCI, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

J Biol Chem. 1994 Dec 23;269(51):32672-7.

PMID:7798274
Abstract

GADD45 (growth arrest and DNA damage) is a DNA-damage-inducible gene regulated in part by the tumor suppressor p53. A role in negative growth control has recently been suggested based on significant (more than 75%) reduction of colony formation following over expression of Gadd45. To better understand the role of Gadd45, we have developed specific rabbit and murine antibodies raised against the human recombinant protein. Using these antibodies, we have found that in ML-1 cells Gadd45 is predominantly a nuclear protein. MyD118, a protein induced by terminal differentiation sharing 57% homology with Gadd45, does not cross-react with any of the antibodies produced. As expected, the induction of Gadd45 protein by ionizing radiation (IR) was also found to be dependent on a wild type p53 phenotype. Interestingly, WI-L2-NS, a human lymphoid cell line, showed very high basal levels of Gadd45 mRNA and protein in addition to a high constitutive level of a mutated p53 protein. In this cell line, the high levels of GADD45 did not inhibit cellular growth in spite of the fact that no mutations were found in GADD45 sequence. These results indicate that some cell line(s) can tolerate high levels of Gadd45 and abrogate its growth suppression function.

摘要

GADD45(生长停滞和DNA损伤)是一种DNA损伤诱导基因,部分受肿瘤抑制因子p53调控。最近,基于Gadd45过表达后集落形成显著减少(超过75%),有人提出其在负性生长调控中发挥作用。为了更好地理解Gadd45的作用,我们制备了针对人重组蛋白的特异性兔抗体和鼠抗体。利用这些抗体,我们发现,在ML-1细胞中,Gadd45主要是一种核蛋白。MyD118是一种由终末分化诱导产生的蛋白,与Gadd45有57%的同源性,它与所产生的任何抗体均无交叉反应。正如预期的那样,还发现电离辐射(IR)诱导Gadd45蛋白依赖于野生型p53表型。有趣的是,人淋巴母细胞系WI-L2-NS除了有高水平的组成型突变p53蛋白外,还显示出非常高的Gadd45 mRNA和蛋白基础水平。在该细胞系中,尽管在GADD45序列中未发现突变,但高水平的GADD45并未抑制细胞生长。这些结果表明,某些细胞系能够耐受高水平的Gadd45并消除其生长抑制功能。

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