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首页> 外文期刊>Bioscience Reports >NAD Glycohydrolase Activities and ADP-Ribose Uptake in Erythrocytes From Normal Subjects and Cancer Patients
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NAD Glycohydrolase Activities and ADP-Ribose Uptake in Erythrocytes From Normal Subjects and Cancer Patients

机译:正常人和癌症患者红细胞中NAD糖水解酶活性和ADP核糖摄取

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Erythrocytes from cancer patients exhibited up to fivefold higher NAD glycohydrolase activities than control erythrocytes from normal subjects and also similarly increased [14C] ADP-ribose uptake values. When [adenosine-14C] NAD was used instead of free [14C] ADP-ribose, the uptake was dependent on ecto-NAD glycohydrolase activity. This was reflected in the inhibition of ADP-ribose uptake from [adenosine-14C] NAD by Cibacron Blue. ADP-ribose uptake in erythrocytes appeared to be complex: upon incubation with free [14C] ADP-ribose, the radiolabel associated with erythrocytes was located in nearly equal parts in cytoplasm and plasma membrane. Part of [14C] ADP-ribose binding to the membrane was covalent, as indicated by its resistance to trichloroacetic acid-treatment. A preincubation with unlabeled ADP-ribose depressed subsequent erythrocyte NAD glycohydrolase activity and binding of [14C] ADP-ribose to erythrocyte membrane; but it failed to inhibit the transfer of labeled ADP-ribose to erythrocyte cytoplasm. On the other hand, incubation with [adenosine-14C] NAD did not result in a similar covalent binding of radiolabel to erythrocyte membrane. In line with this finding, a preincubation with unlabeled NAD was not inhibitory on subsequent NAD glycohydrolase reaction and ADP-ribose binding. ADP-ribose binding and NAD glycohydrolase activities were found also in solubilized erythrocyte membrane proteins and, after size fractionation, mainly in a protein fraction of around 45kDa-molecular weight.
机译:来自癌症患者的红细胞显示出比正常受试者的对照红细胞高出五倍的NAD糖水解酶活性,并且同样增加[14C] ADP-核糖摄取值。当使用[adenosine-14C] NAD代替游离的[14C] ADP-核糖时,摄取取决于ecto-NAD糖水解酶的活性。 Cibacron Blue抑制了从[Adenosine-14C] NAD吸收ADP-核糖。红细胞中ADP核糖的摄取似乎很复杂:与游离的[14C] ADP核糖温育后,与红细胞相关的放射性标记几乎位于细胞质和质膜的相等位置。如其对三氯乙酸处理的抗性所示,部分[14C] ADP-核糖与膜的结合是共价的。与未标记的ADP-核糖的预孵育抑制了随后的红细胞NAD糖水解酶活性以及[14C] ADP-核糖与红细胞膜的结合;但它不能抑制标记的ADP-核糖向红细胞胞质的转移。另一方面,与[Adenosine-14C] NAD孵育不会导致放射性标记与红细胞膜发生类似的共价结合。与该发现一致,用未标记的NAD进行的预温育对随后的NAD糖水解酶反应和ADP-核糖结合没有抑制作用。在溶解的红细胞膜蛋白中也发现了ADP-核糖结合和NAD糖水解酶活性,并且在大小分级分离之后,主要存在于约45kDa分子量的蛋白部分中。

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