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Ectonucleotidases in the kidney

机译:肾脏中的核酸外切酶

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摘要

Members of all four families of ectonucleotidases, namely ectonucleoside triphosphate diphosphohydrolases (NTPDases), ectonucleotide pyrophosphatase/phosphodiesterases (NPPs), ecto-5′-nucleotidase and alkaline phosphatases, have been identified in the renal vasculature and/or tubular structures. In rats and mice, NTPDase1, which hydrolyses ATP through to AMP, is prominent throughout most of the renal vasculature and is also present in the thin ascending limb of Henle and medullary collecting duct. NTPDase2 and NTPDase3, which both prefer ATP over ADP as a substrate, are found in most nephron segments beyond the proximal tubule. NPPs catalyse not only the hydrolysis of ATP and ADP, but also of diadenosine polyphosphates. NPP1 has been identified in proximal and distal tubules of the mouse, while NPP3 is expressed in the rat glomerulus and pars recta, but not in more distal segments. Ecto-5′-nucleotidase, which catalyses the conversion of AMP to adenosine, is found in apical membranes of rat proximal convoluted tubule and intercalated cells of the distal nephron, as well as in the peritubular space. Finally, an alkaline phosphatase, which can theoretically catalyse the entire hydrolysis chain from nucleoside triphosphate to nucleoside, has been identified in apical membranes of rat proximal tubules; however, this enzyme exhibits relatively high Km values for adenine nucleotides. Although information on renal ectonucleotidases is still incomplete, the enzymes’ varied distribution in the vasculature and along the nephron suggests that they can profoundly influence purinoceptor activity through the hydrolysis, and generation, of agonists of the various purinoceptor subtypes. This review provides an update on renal ectonucleotidases and speculates on the functional significance of these enzymes in terms of glomerular and tubular physiology and pathophysiology.
机译:已经在肾血管和/或肾小管结构中鉴定出了四个外切核苷酸酶家族的成员,即外切核苷酸三磷酸二磷酸氢水解酶(NTPDases),外切核苷酸焦磷酸酶/磷酸二酯酶(NPPs),外切5'-核苷酸酶和碱性磷酸酶。在大鼠和小鼠中,能将ATP水解成AMP的NTPDase1在整个肾血管的大部分部位都很突出,并且也存在于Henle的细小上升肢和髓收集管中。在近端肾小管以外的大多数肾单位中都发现了NTPDase2和NTPDase3,它们都比ATP更喜欢ATP作为底物。 NPP不仅催化ATP和ADP的水解,还催化多聚腺苷多磷酸。已在小鼠的近端和远端小管中鉴定出NPP1,而NPP3在大鼠肾小球和直肌中表达,但在更远的远端部分中未发现。 Ecto-5'核苷酸酶催化AMP转化为腺苷,在大鼠近曲小管的顶端膜和远端肾单位的插层细胞以及肾小管周间隙中发现。最后,在大鼠近端小管的顶膜中已鉴定出一种碱性磷酸酶,该酶理论上可以催化从三磷酸核苷到核苷的整个水解链。然而,该酶对于腺嘌呤核苷酸表现出相对较高的Km值。尽管关于肾脏外切核苷酸酶的信息仍不完整,但这些酶在脉管系统和肾单位中的分布各不相同,表明它们可以通过水解和生成各种嘌呤受体亚型的激动剂来深刻影响嘌呤受体的活性。这篇综述提供了肾外切核苷酸酶的最新进展,并推测了这些酶在肾小球和肾小管的生理和病理生理方面的功能意义。

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