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细胞外CD38催化的T淋巴细胞中环磷酸腺苷核糖的合成与细胞内Ca2+信号传导活性在功能上不相关。

Ectocellular CD38-catalyzed synthesis and intracellular Ca2+-signalling activity of cyclic ADP-ribose in T-lymphocytes are not functionally related.

作者信息

da Silva C P, Schweitzer K, Heyer P, Malavasi F, Mayr G W, Guse A H

机构信息

University of Hamburg, Institute of Physiological Chemistry, Department of Enzyme Chemistry, Germany.

出版信息

FEBS Lett. 1998 Nov 20;439(3):291-6. doi: 10.1016/s0014-5793(98)01396-9.

Abstract

Cyclic ADP-ribose (cADPR) is a natural metabolite of beta-NAD+ with a potent Ca2+-mobilizing activity in different cell types, including T-lymphocytes. We investigated (i) whether stimulation of T-lymphocytes with different agonists affects the intracellular concentration of cADPR, and (ii) whether the lymphocyte antigen CD38, through its ectocellular ADP-ribosyl cyclase and cADPR-hydrolase enzymatic activities, can account for the regulation of the intracellular levels of cADPR and the Ca2+-mobilizing effects of this nucleotide in Jurkat and HPB.ALL T-lymphocytes. The anti-CD3 antibody OKT3, the sphingolipid sphingosine and lysophosphatidic acid induced an increase in intracellular cADPR with concomitant increases in the intracellular Ca2+ concentration ([Ca2+]i). In contrast, activation of an ectocellular ADP-ribosyl cyclase by preincubation of cells with beta-NAD+ led to a dose-dependent increase in cADPR, but no changes in [Ca2+]i were observed. However, extensive washing of the cells following preincubation with NAD+ demonstrated that the increases in cADPR were not intracellular but due to cell surface-associated nucleotide. Accordingly, measurements of ADP-ribosyl cyclase activity in intact T-cells showed ectocellular synthesis of cADPR, but no evidence was obtained for a shift of this activity into the cells which could account for intracellular accumulation of cADPR. Taken together, the results indicate no direct involvement of the ADP-ribosyl cyclase activity of CD38 on the regulation of the cADPR-mediated intracellular Ca2+-signalling in T-lymphocytes.

摘要

环磷酸腺苷核糖(cADPR)是β-NAD⁺的一种天然代谢产物,在包括T淋巴细胞在内的不同细胞类型中具有强大的钙动员活性。我们研究了:(i)用不同激动剂刺激T淋巴细胞是否会影响cADPR的细胞内浓度;(ii)淋巴细胞抗原CD38是否通过其胞外ADP核糖基环化酶和cADPR水解酶活性,参与调节Jurkat和HPB.ALL T淋巴细胞中cADPR的细胞内水平以及该核苷酸的钙动员效应。抗CD3抗体OKT3、鞘脂类神经鞘氨醇和溶血磷脂酸可诱导细胞内cADPR增加,同时细胞内钙浓度([Ca²⁺]i)也随之升高。相反,用β-NAD⁺预孵育细胞激活胞外ADP核糖基环化酶,可导致cADPR呈剂量依赖性增加,但未观察到[Ca²⁺]i发生变化。然而,用NAD⁺预孵育细胞后大量洗涤细胞表明,cADPR的增加并非细胞内源性的,而是由于细胞表面相关核苷酸所致。因此,完整T细胞中ADP核糖基环化酶活性的测量结果显示存在cADPR的胞外合成,但未获得该活性转移至细胞内从而导致cADPR在细胞内积累的证据。综上所述,结果表明CD38的ADP核糖基环化酶活性不直接参与T淋巴细胞中cADPR介导的细胞内钙信号调节。

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