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来自HeLa细胞的m7G(5')pppN-焦磷酸酶活性的表征。

Characterization of the m7G(5')pppN-pyrophosphatase activity from HeLa cells.

作者信息

Nuss D L, Furuichi Y

出版信息

J Biol Chem. 1977 May 10;252(9):2815-21.

PMID:16003
Abstract

The m7(G(5')pppN-pyrophosphatase activity previously detected in HeLa cells has been further characterized. Results from DEAE-cellulose column chromatography and polyacrylamide gel electrophoresis under nondenaturing conditions revealed only one enzyme activity in HeLa cell extracts which was capable of selectively hydrolyzing m7G(5')pppN to yield m7pG + ppN (where N = 2'-O-methylated or unmethylated ribonucleosides or oligonucleotides of up to 8 to 10 nucleosides in length). The majority (approximately 95%) of this activity was found in the cytoplasmic extract but appeared not to be associated with the lysosomal fraction. m7G(5')pppG was hydrolyzed by the partially purified enzyme in the absence of divalent cations at a pH optimum of 7.5 and a temperature optimum of 45 degrees, with a Michaelis constant (Km) of 1.7 micronM. Sedimentation analysis and gel filtration showed the molecular weight of the enzyme as approximately 81,000. Inhibition studies testing the effect of a number of prospective substrates on the rate of m7G(5')pppG hydrolysis have confirmed the importance of the methyl moiety at the N7 position of guanosine for enzyme-substrate interaction. Furthermore, the trimethylated guanosine-containing 5'-terminal structure derived from U-2 RNA was found not to serve as substrate, and 7-methylinosine, unlike 7-methylguanosine, was not an effective inhibitor of m7G(5')pppG hydrolysis. Thus, the 2-amino group of the 7-methylguanosine portion of m7G(5')pppN is also important for substrate interaction with this specific pyrophosphatase.

摘要

先前在HeLa细胞中检测到的m7(G(5')pppN-焦磷酸酶活性已得到进一步表征。DEAE-纤维素柱色谱和非变性条件下的聚丙烯酰胺凝胶电泳结果显示,HeLa细胞提取物中只有一种酶活性,能够选择性地将m7G(5')pppN水解为m7pG + ppN(其中N = 2'-O-甲基化或未甲基化的核糖核苷或长度达8至10个核苷的寡核苷酸)。该活性的大部分(约95%)存在于细胞质提取物中,但似乎与溶酶体部分无关。在没有二价阳离子的情况下,部分纯化的酶在最适pH 7.5和最适温度45℃下可水解m7G(5')pppG,米氏常数(Km)为1.7微摩尔。沉降分析和凝胶过滤显示该酶的分子量约为81,0万。测试多种潜在底物对m7G(5')pppG水解速率影响的抑制研究证实,鸟苷N7位的甲基部分对于酶-底物相互作用很重要。此外,发现源自U-2 RNA的含三甲基化鸟苷的5'-末端结构不能作为底物,并且7-甲基肌苷与7-甲基鸟苷不同,不是m7G(5')pppG水解的有效抑制剂。因此,m7G(5')pppN的7-甲基鸟苷部分的2-氨基对于该特定焦磷酸酶与底物的相互作用也很重要。

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