Wang Z Q, Auer B, Stingl L, Berghammer H, Haidacher D, Schweiger M, Wagner E F
Research Institute of Molecular Pathology (IMP), Vienna, Austria.
Genes Dev. 1995 Mar 1;9(5):509-20. doi: 10.1101/gad.9.5.509.
Poly(ADP-ribosyl)ation is catalyzed by NAD+: protein(ADP-ribosyl) transferase (ADPRT), a chromatin-associated enzyme which, in the presence of DNA breaks, transfers ADP-ribose from NAD+ to nuclear proteins. This post-translational modification has been implicated in many fundamental processes, like DNA repair, chromatin stability, cell proliferation, and cell death. To elucidate the biological function of ADPRT and poly(ADP-ribosyl)ation in vivo the gene was inactivated in the mouse germ line. Mice homozygous for the ADPRT mutation are healthy and fertile. Analysis of mutant tissues and fibroblasts isolated from mutant fetuses revealed the absence of ADPRT enzymatic activity and poly(ADP-ribose), implying that no poly(ADP-ribosyl)ated proteins are present. Mutant embryonic fibroblasts were able to efficiently repair DNA damaged by UV and alkylating agents. However, proliferation of mutant primary fibroblasts as well as thymocytes following gamma-radiation in vivo was impaired. Moreover, mutant mice are susceptible to the spontaneous development of skin disease as approximately 30% of older mice develop epidermal hyperplasia. The generation of viable ADPRT-/-mice negates an essential role for this enzyme in normal chromatin function, but the impaired proliferation and the onset of skin lesions in older mice suggest a function for ADPRT in response to environmental stress.
聚(ADP - 核糖基)化反应由NAD⁺:蛋白质(ADP - 核糖基)转移酶(ADPRT)催化,ADPRT是一种与染色质相关的酶,在DNA断裂存在时,它将NAD⁺中的ADP - 核糖转移到核蛋白上。这种翻译后修饰参与了许多基本过程,如DNA修复、染色质稳定性、细胞增殖和细胞死亡。为了阐明ADPRT和聚(ADP - 核糖基)化在体内的生物学功能,该基因在小鼠生殖系中被灭活。ADPRT突变纯合子小鼠健康且可育。对从突变胎儿分离的突变组织和成纤维细胞的分析显示,不存在ADPRT酶活性和聚(ADP - 核糖),这意味着不存在聚(ADP - 核糖基)化的蛋白质。突变胚胎成纤维细胞能够有效修复紫外线和烷化剂损伤的DNA。然而,体内γ射线照射后,突变原代成纤维细胞以及胸腺细胞的增殖受到损害。此外,突变小鼠易患自发性皮肤病,约30%的老年小鼠会出现表皮增生。存活的ADPRT⁻/⁻小鼠的产生否定了该酶在正常染色质功能中的重要作用,但老年小鼠增殖受损和皮肤病变的出现表明ADPRT在应对环境应激方面具有功能。