Cancer Institute of New Jersey, University of Medicine and Dentistry of New Jersey, New Brunswick, New Jersey 08903, USA.
Cold Spring Harb Perspect Biol. 2009 Dec;1(6):a001073. doi: 10.1101/cshperspect.a001073. Epub 2009 Oct 28.
The p53 family of genes (p53, p63, and p73) is conserved over evolutionary time scales. Although the functions of p53 gene and its protein as a tumor suppressor have been firmly established, the earliest functions for the p53 ancestral genes in worms and flies are to ensure germ-line genomic integrity and the fidelity of the developmental process. In vertebrates, the p53 family of genes retains those functions in germ-line genomic integrity but have added important functions in regulation of reproduction. Loss of the p53, p63, or p73 genes in female mice leads to a significant decrease of fertility. The p53 gene product regulates maternal reproduction at the implantation stage of the embryo. p63 and p73 play important roles in monitoring the genomic quality of oocytes. The p53 pathway appears to play a similar role in human fertility. In humans, certain alleles containing a functional single-nucleotide polymorphism (SNP) in the p53 pathway are under positive evolutionary selection. Selected alleles of these SNPs in the p53 pathway are associated with decreased fertility. This important function of the p53 pathway in reproduction provides a plausible explanation for the evolution of p53 as a tumor suppressor gene and the positive selection of some alleles in the p53 gene and its pathway. These observations provide a good possible example of antagonistic pleiotrophy for fertility, tumor suppression, and longevity.
p53 基因家族(p53、p63 和 p73)在进化时间尺度上是保守的。虽然 p53 基因及其蛋白作为肿瘤抑制因子的功能已经得到了确凿的证实,但 p53 基因在蠕虫和苍蝇中的最早功能是确保生殖系基因组的完整性和发育过程的保真度。在脊椎动物中,p53 基因家族保留了生殖系基因组完整性的这些功能,但在调节生殖方面增加了重要的功能。p53、p63 或 p73 基因在雌性小鼠中的缺失会导致生育能力显著下降。p53 基因产物在胚胎着床阶段调节母体生殖。p63 和 p73 在监测卵母细胞的基因组质量方面发挥着重要作用。p53 途径似乎在人类生育能力中也发挥着类似的作用。在人类中,p53 途径中含有功能性单核苷酸多态性(SNP)的某些等位基因受到正向进化选择。p53 途径中这些 SNP 的选定等位基因与生育能力下降有关。p53 途径在生殖中的这一重要功能为 p53 作为肿瘤抑制基因以及 p53 基因及其途径中某些等位基因的正选择提供了一个合理的解释。这些观察结果为生育、肿瘤抑制和长寿的拮抗多效性提供了一个很好的可能例子。