Tomasini Richard, Tsuchihara Katsuya, Wilhelm Margareta, Fujitani Masashi, Rufini Alessandro, Cheung Carol C, Khan Fatima, Itie-Youten Annick, Wakeham Andrew, Tsao Ming-Sound, Iovanna Juan L, Squire Jeremy, Jurisica Igor, Kaplan David, Melino Gerry, Jurisicova Andrea, Mak Tak W
The Campbell Family Institute for Breast Cancer Research, Princess Margaret Hospital, Toronto, Ontario M5G 2C1, Canada.
Genes Dev. 2008 Oct 1;22(19):2677-91. doi: 10.1101/gad.1695308. Epub 2008 Sep 19.
The Trp53 gene family member Trp73 encodes two major groups of protein isoforms, TAp73 and DeltaNp73, with opposing pro- and anti-apoptotic functions; consequently, their relative ratio regulates cell fate. However, the precise roles of p73 isoforms in cellular events such as tumor initiation, embryonic development, and cell death remain unclear. To determine which aspects of p73 function are attributable to the TAp73 isoforms, we generated and characterized mice in which exons encoding the TAp73 isoforms were specifically deleted to create a TAp73-deficient (TAp73(-/-)) mouse. Here we show that mice specifically lacking in TAp73 isoforms develop a phenotype intermediate between the phenotypes of Trp73(-/-) and Trp53(-/-) mice with respect to incidence of spontaneous and carcinogen-induced tumors, infertility, and aging, as well as hippocampal dysgenesis. In addition, cells from TAp73(-/-) mice exhibit genomic instability associated with enhanced aneuploidy, which may account for the increased incidence of spontaneous tumors observed in these mutants. Hence, TAp73 isoforms exert tumor-suppressive functions and indicate an emerging role for Trp73 in the maintenance of genomic stability.
Trp53基因家族成员Trp73编码两大类蛋白质异构体,即TAp73和DeltaNp73,它们具有相反的促凋亡和抗凋亡功能;因此,它们的相对比例调节细胞命运。然而,p73异构体在肿瘤发生、胚胎发育和细胞死亡等细胞事件中的具体作用仍不清楚。为了确定p73功能的哪些方面归因于TAp73异构体,我们构建并鉴定了编码TAp73异构体的外显子被特异性删除的小鼠,以创建TAp73基因敲除(TAp73(-/-))小鼠。我们在此表明,在自发肿瘤和致癌物诱导肿瘤的发生率、不育、衰老以及海马发育异常方面,特异性缺乏TAp73异构体的小鼠所表现出的表型介于Trp73(-/-)和Trp53(-/-)小鼠的表型之间。此外,TAp73(-/-)小鼠的细胞表现出与非整倍体增加相关的基因组不稳定,这可能解释了在这些突变体中观察到的自发肿瘤发生率增加的原因。因此,TAp73异构体发挥肿瘤抑制功能,并表明Trp73在维持基因组稳定性方面有新的作用。