Nicotinic Acid Adenine Dinucleotide 2'-Phosphate (NAADP) Binding Proteins in T-Lymphocytes.

Timothy F Walseth, Yaping Lin-Moshier, Karin Weber, Jonathan S Marchant, James T Slama, Andreas H Guse
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引用次数: 45

Abstract

Nicotinic acid adenine dinucleotide phosphate (NAADP) is a messenger that regulates calcium release from intracellular acidic stores. Although several channels, including two-pore channels (TPC), ryanodine receptor (RYR) and mucolipin (TRP-ML1) have been implicated in NAADP regulation of calcium signaling, the NAADP receptor has not been identified. In this study, the photoaffinity probe, [32P]-5-azido-NAADP ([32P]-5-N3-NAADP), was used to study NAADP binding proteins in extracts from NAADP responsive Jurkat T-lymphocytes. [32P]-5-N3-NAADP photolabeling of Jurkat S100 cytosolic fractions resulted in the labeling of at least ten distinct proteins. Several of these S100 proteins, including a doublet at 22/23 kDa and small protein at 15 kDa displayed selectivity for NAADP as the labeling was protected by inclusion of unlabeled NAADP, whereas the structurally similar NADP required much higher concentrations for protection. Interestingly, the labeling of several S100 proteins (60, 45, 33 and 28 kDa) was stimulated by low concentrations of unlabeled NAADP, but not by NADP. The effect of NAADP on the labeling of the 60 kDa protein was biphasic, peaking at 100 nM with a five-fold increase and displaying no change at 1 µM NAADP. Several proteins were also photolabeled when the P100 membrane fraction from Jurkat cells was examined. Similar to the results with S100, a 22/23 kDa doublet and a 15 kDa protein appeared to be selectively labeled. NAADP did not increase the labeling of any P100 proteins as it did in the S100 fraction. The photolabeled S100 and P100 proteins were successfully resolved by two-dimensional gel electrophoresis. [32P]-5-N3-NAADP photolabeling and two-dimensional electrophoresis should represent a suitable strategy in which to identify and characterize NAADP binding proteins.

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t淋巴细胞中烟酸腺嘌呤二核苷酸2'-磷酸(NAADP)结合蛋白。
烟酸腺嘌呤二核苷酸磷酸(NAADP)是调节钙从细胞内酸性储存释放的信使。虽然包括双孔通道(TPC)、红嘌呤受体(RYR)和粘磷脂(TRP-ML1)在内的几个通道都参与了NAADP对钙信号的调节,但NAADP受体尚未被确定。本研究采用光亲和探针[32P]-5-叠氮多-NAADP ([32P]-5-N3-NAADP)研究了NAADP反应性Jurkat t淋巴细胞提取物中的NAADP结合蛋白。[32P]-5-N3-NAADP光标记Jurkat S100细胞质组分导致至少10种不同的蛋白质标记。这些S100蛋白中的一些,包括22/23 kDa的双链蛋白和15 kDa的小蛋白,对NAADP表现出选择性,因为标记被未标记的NAADP所保护,而结构相似的NADP需要更高的浓度来保护。有趣的是,低浓度的未标记的NAADP刺激了几种S100蛋白(60、45、33和28 kDa)的标记,而不是NADP。NAADP对60 kDa蛋白的标记作用是双相的,在100 nM处达到峰值,增加了5倍,在1µM NAADP下没有变化。当Jurkat细胞的P100膜组分被检测时,几种蛋白质也被光标记。与S100的结果相似,22/23 kDa双链和15 kDa蛋白似乎被选择性标记。NAADP没有增加任何P100蛋白的标记,就像在S100部分一样。通过二维凝胶电泳成功地分离了光标记的S100和P100蛋白。[32P]-5-N3-NAADP光标记和双向电泳应该是鉴定和表征NAADP结合蛋白的合适策略。
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