Chen Jun, Ruan Hua, Ng Sok Meng, Gao Chuan, Soo Hui Meng, Wu Wei, Zhang Zhenhai, Wen Zilong, Lane David P, Peng Jinrong
Laboratory of Functional Genomics, Laboratory of Molecular and Developmental Immunology, Laboratory of Control of p53 Pathway, Institute of Molecular and Cell Biology, Proteos, Singapore 138673.
Genes Dev. 2005 Dec 1;19(23):2900-11. doi: 10.1101/gad.1366405.
Transcription factor p53 forms a network with associated factors to regulate the cell cycle and apoptosis in response to environmental stresses. However, there is currently no direct genetic evidence to show if or how the p53 pathway functions during organogenesis. Here we present evidence to show that the zebrafish def (digestive-organ expansion factor) gene encodes a novel pan-endoderm-specific factor. A loss-of-function mutation in def confers hypoplastic digestive organs and selectively up-regulates the expression of Delta113p53, counterpart to a newly identified isoform of p53 produced by an alternative internal promoter in intron 4 of the p53 gene in human. The increased Delta113p53 expression is limited to within the mutant digestive organs, and this increase selectively induces the expression of p53-responsive genes to trigger the arrest of the cell cycle but not apoptosis, resulting in compromised organ growth in the mutant. Our data demonstrate that, while induction of expression of p53 and/or its isoforms is crucial to suppress abnormal cell growth, Delta113p53 is tightly regulated by an organ/tissue-specific factor Def, especially during organogenesis, to prevent adverse inhibition of organ/tissue growth.
转录因子p53与相关因子形成一个网络,以响应环境压力调节细胞周期和细胞凋亡。然而,目前尚无直接的遗传学证据表明p53通路在器官发生过程中是否发挥作用以及如何发挥作用。在此,我们提供证据表明斑马鱼def(消化器官扩张因子)基因编码一种新型的全内胚层特异性因子。def功能缺失突变导致消化器官发育不全,并选择性地上调Delta113p53的表达,Delta113p53是人类p53基因第4内含子中一个新发现的由可变内部启动子产生的p53异构体的对应物。Delta113p53表达的增加仅限于突变体的消化器官内,这种增加选择性地诱导p53反应基因的表达,从而触发细胞周期停滞但不诱导细胞凋亡,导致突变体器官生长受损。我们的数据表明,虽然p53及其异构体表达的诱导对于抑制异常细胞生长至关重要,但Delta113p53受到器官/组织特异性因子Def的严格调控,尤其是在器官发生过程中,以防止对器官/组织生长产生不利抑制。