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Molecular cloning and characterization of expressed human ecto-nucleoside triphosphate diphosphohydrolase 8 (E-NTPDase 8) and its soluble extracellular domain

机译:表达的人胞外核苷三磷酸二磷酸水解酶8(E-NTPDase 8)及其可溶性细胞外结构域的分子克隆和表征

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摘要

An ecto-nucleoside triphosphate diphosphohydrolase ( ecto- NTPDase) has been cloned from human liver RNA by RT-PCR. The 1.5 kb cDNA codes for a protein of 495 amino acids. Sequence analysis indicated that it is most closely related to a chicken ecto-ATPDase previously cloned in our laboratory [Knowles et al. ( 2002) Eur. J. Biochem. 269, 2373-2382] and a mouse homologue that has been designated as E-NTPDase 8 [Bigonnesses et al. ( 2004) Biochemistry 43, 5511- 5519]. The human E-NTPDase 8 has similar topology as the avian and mouse E-NTPDase 8 but has fewer potential N-glycosylation sites and only two amino acid residues in the cytoplasm at its C-terminus. Despite 52% identity in primary structures, enzymatic properties of human E-NTPDase 8 expressed in HEK293 cells differ from that of the chicken E-NTPDase 8. In contrast to the chicken E-NTPDase 8, the human E-NTPDase 8 hydrolyzes MgADP poorly and is inhibited by several detergents as well as benzyl alcohol; the latter attribute may be related to weaker interaction of the transmembranous domains of the human E-NTPDase 8. To demonstrate that inhibition by detergents is mediated by the transmembranous domains, a recombinant pSecTag2 plasmid containing the extracellular domain (ECD) of the human E-NTPDase 8 was constructed. The soluble human E-NTPDase 8 which was secreted into the culture media of transfected HEK293 cells was purified by ammonium sulfate fractionation and nickel affinity chromatography. Besides becoming resistant to detergent inhibition, the soluble human E-NTPDase 8 ECD displays greater activity with Ca nucleotide substrates, an increased affinity for ATP, different pH dependence, and a decreased sensitivity to azide inhibition when compared to the membrane-bound enzyme. These differences may result from the different conformations that the ECD assume without or with constraints exerted by the transmembranous domains. These results indicate that the transmembranous domains are important in regulating enzyme activity as well as in determining the structure of human E-NTPDase 8.
机译:已经通过RT-PCR从人肝RNA中克隆了外核苷三磷酸二磷酸水解酶(ecto-NTPDase)。 1.5 kb cDNA编码一个495个氨基酸的蛋白质。序列分析表明,它与先前在我们实验室中克隆的鸡ecto-ATPDase最为相关[Knowles等。 (2002年)。 J.生物化学。 269,2373-2382]和已被命名为E-NTPDase 8的小鼠同源物[Bigonnesses et al。,2002; (2004)Biochemistry 43,5511-555]。人E-NTPDase 8具有与禽类和小鼠E-NTPDase 8相似的拓扑结构,但具有较少的潜在N-糖基化位点,并且在其C末端的细胞质中只有两个氨基酸残基。尽管在一级结构中具有52%的同一性,但在鸡HE-293D细胞中表达的人E-NTPDase 8的酶学性质与鸡E-NTPDase 8的酶学性质不同。与鸡E-NTPDase 8相比,人E-NTPDase 8的水解MgADP差。并被几种去污剂和苯甲醇抑制;后一属性可能与人E-NTPDase 8跨膜结构域的相互作用较弱有关。为证明去污剂的抑制作用是由跨膜结构域介导的,重组pSecTag2质粒包含人E-NTPDase 8的胞外域(ECD)。构建了NTPDase 8。通过硫酸铵分级分离和镍亲和层析纯化分泌到转染的HEK293细胞的培养基中的可溶性人E-NTPDase 8。与膜结合酶相比,除了对去污剂抑制具有抗性外,可溶性人E-NTPDase 8 ECD对Ca核苷酸底物的活性更高,对ATP的亲和力增加,pH依赖性不同,对叠氮化物抑制的敏感性降低。这些差异可能是由ECD假定的不同构型引起的,而没有跨膜结构域施加约束或具有跨膜结构域施加的约束。这些结果表明跨膜结构域在调节酶活性以及确定人E-NTPDase 8的结构中很重要。

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