首页> 外文期刊>Biochimie >ON THE BIOLOGICAL ROLE OF THE NUCLEAR POLYMERIZING NAD(+)- PROTEIN(ADP-RIBOSYL) TRANSFERASE (ADPRT) - ADPRT FROM DICTYOSTELIUM DISCOIDEUM AND INACTIVATION OF THE ADPRT GENE IN THE MOUSE
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ON THE BIOLOGICAL ROLE OF THE NUCLEAR POLYMERIZING NAD(+)- PROTEIN(ADP-RIBOSYL) TRANSFERASE (ADPRT) - ADPRT FROM DICTYOSTELIUM DISCOIDEUM AND INACTIVATION OF THE ADPRT GENE IN THE MOUSE

机译:双歧杆菌的核聚合NAD(+)-蛋白质(ADP-核糖基)转移酶(ADPRT)-ADPRT的生物学作用及小鼠中ADPRT基因的活化

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Two approaches have been used to elucidate the role of the nuclear polymerizing NAD(+):protein(ADP-ribosyl)transferase (ADPRT): i) comparison of the primary structure of Dictyostelium discoideum ADPRT derived from a 2 lib, partial cDNA sequence with the mammalian, fish, amphibian and insect counterparts revealed an overall homology of 25%. Whereas the automodification domain was not conserved at all, the NAD(+) binding domain (aa 859-908) showed more than 70% identical amino acids in all species. Together with the similar enzymatic properties of the ADPRTs the genetic conservation underlined the notion that ADPRT plays a major role in various cellular processes; and ii) inactivation of the ADPRT gene in murine embryonic stem cells by homologous recombination led to mouse strains with a complete lack of nuclear poly(ADP-ribosyl)ation. These ADPRT mutant mice were viable and fertile indicating that ADPRT is dispensable in mouse development. Moreover, repair of UV and MNNG induced DNA damage was not affected in ADPRT/3T3 Like fibroblasts, as measured by reactivation of in vitro damaged reporter plasmids and unscheduled DNA synthesis. However, about 30% of the ADPRT mutant mice developed pathological skin aberrations on a mixed 129/Sv x C57B1/6 genetic background. These mice will be extremely useful to define the precise biological role of poly(ADP-ribosyl)ation. [References: 26]
机译:两种方法已被用来阐明核聚合NAD(+):蛋白质(ADP-核糖基)转移酶(ADPRT)的作用:i)比较盘基网柄菌ADPRT的2 lib,部分cDNA序列和哺乳动物,鱼类,两栖动物和昆虫对应物的总体同源性为25%。尽管自修饰域根本不保守,但NAD(+)结合域(aa 859-908)在所有物种中均显示超过70%的相同氨基酸。连同ADPRT的类似酶促性质,遗传保护强调了ADPRT在各种细胞过程中起着重要作用的观念。 (ii)通过同源重组使鼠胚胎干细胞中的ADPRT基因失活,导致小鼠品系完全缺乏核聚(ADP-核糖基)化。这些ADPRT突变小鼠是活的和可育的,表明ADPRT在小鼠发育中是可有可无的。此外,通过体外损伤的报告质粒的重新活化和计划外的DNA合成,可以测量ADPRT / 3T3像成纤维细胞中对UV和MNNG诱导的DNA损伤的修复不受影响。但是,大约30%的ADPRT突变小鼠在混合的129 / Sv x C57B1 / 6遗传背景下出现了病理性皮肤畸变。这些小鼠对于定义聚(ADP-核糖基)化的精确生物学作用将非常有用。 [参考:26]

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