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Cloning and characterization of the NapA acid phosphatase/phosphotransferase of Morganella morganii: identification of a new family of bacterial acid-phosphatase-encoding genes

机译:摩根菌羊纳帕酸性磷酸酶/磷酸转移酶的克隆与表征Morganella Morganii:鉴定一系列细菌酸 - 磷酸酶编码基因

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SUMMARY: The gene encoding a minor phosphate-irrepressible acid phosphatase (named NapA) of Morganella morganii was cloned and sequenced, and its product characterized. NapA is a secreted acid phosphatase composed of four 27 kDa polypeptide subunits. The enzyme is active on several organic phosphate monoesters but not on diesters, and is also endowed with transphosphorylating activity from organic phosphoric acid esters to nucleosides and other compounds with free hydroxyl groups. Its activity is inhibited by EDTA, inorganic phosphate, nucleosides and Ca2+, but not by fluoride or tartrate, and is enhanced by Mg2+, Co2+ and Zn2+. At the sequence level, the NapA enzyme did not show similarities to any other sequenced bacterial phosphatases. However, a search for homologous genes in sequence databases allowed identification of two open reading frames located within sequenced regions of the Escherichia coli and Proteus mirabilis genomes respectively, encoding proteins of unknown function which are highly homologous to the Morganella enzyme. Moreover, the properties of the NapA enzyme are very similar to those reported for the periplasmic nonspecific acid phosphatase II of Salmonella typhimurium (for which no sequence data are available). These data point to the existence of a new family of bacterial acid phosphatases, which we propose designating class B bacterial acid phosphatases.
机译:发明内容:克隆和测序编码莫尔氏菌莫加尔霉素的次磷酸盐 - 不可抑制酸性磷酸酶(命名NaPA)的基因,其特征在于。纳帕是由四种27kDa多肽亚基组成的分泌酸性磷酸酶。酶在几种有机磷酸盐单酯上活性,但不在二酯上,并且还赋予从有机磷酸酯的转磷酸化活性与核苷和具有游离羟基的其他化合物。其活性由EDTA,无机磷酸盐,核苷和Ca2 +抑制,但不是通过氟化物或酒石酸酯,并通过Mg2 +,CO 2 +和Zn2 +增强。在序列水平上,NAPA酶未显示与任何其他测序的细菌磷酸酶相似。然而,在序列数据库中寻找同源基因,允许分别识别位于大肠杆菌和蛋白质mirabilis基因组的测序区域内的两个开放阅读框架,编码未知函数的蛋白质对Morganella酶高度同源。此外,NaPA酶的性质与据报道的Salmonella Typhimurium的周质非特异性酸性磷酸酶II的性质非常相似(没有可用的序列数据)。这些数据指向存在新的细菌酸磷酸酶的存在,我们提出指定B类细菌酸性磷酸酶。

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