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内源性一氧化氮对人血小板基础胞质[Ca2+]及细胞内钙库Ca2+释放的影响

Influence of authentic nitric oxide on basal cytosolic [Ca2+] and Ca2+ release from internal stores in human platelets.

作者信息

Le Quan Sang K H, Lantoine F, Devynck M A

机构信息

CNRS URA 1482, Faculté de Médecine Necker, Université René Descartes, Paris, France.

出版信息

Br J Pharmacol. 1996 Dec;119(7):1361-6. doi: 10.1111/j.1476-5381.1996.tb16047.x.

Abstract
  1. Nitric oxide (NO) donors inhibit platelet function and Ca2+ mobilization evoked by different agonists. This led us to investigate the direct effects of authentic NO on basal cytosolic Ca2+ concentration ([Ca2+]i) and on Ca2+ mobilization induced by thrombin or by two inhibitors of intracellular Ca(2+)-ATPases, thapsigargin and 2,5-di-(t-butyl)-1,4-benzohydroquinone (t-BuBHQ). 2. Cytosolic Ca2+ concentration was evaluated with Fura-2, in the absence of Ca2+ influx. Addition of 5 microM NO increased by 48% the basal cytosolic [Ca2+] of resting human platelets whereas a lower concentration (0.1 microM) did not induce significant modifications. This NO-induced Ca2+ increase was inversely correlated with the basal level of cytosolic [Ca2+]. 3. NO pretreatment for 30 to 120 s decreased by 42 to 57% the transient [Ca2+]i peak evoked by 0.10 u ml-1 thrombin and strongly attenuated the initial rate of [Ca2+]i rise induced by 1 microM thapsigargin or by 20 microM t-BuBHQ. The two components of the thapsigargin response, the Ca2+ release due to inhibition of Ca2+ pumps and the thromboxane A2-dependent self-amplification mechanism, were inhibited by NO. The observation that a subsequent stimulation was still capable of eliciting Ca2+ release suggests the presence of NO-insensitive Ca2+ stores. 4. These findings indicate that nitric oxide can modulate basal cytosolic [Ca2+] in unstimulated human platelets and decrease the Ca2+ mobilization from NO-sensitive internal stores evoked by stimulation of receptors or by Ca(2+)-ATPase inhibitors. This underlines the important role of nitric oxide in the modulation of platelet Ca2+ handling.
摘要
  1. 一氧化氮(NO)供体可抑制不同激动剂诱发的血小板功能和Ca2+动员。这促使我们研究真实的NO对基础胞质Ca2+浓度([Ca2+]i)以及凝血酶或两种细胞内Ca(2+)-ATP酶抑制剂(毒胡萝卜素和2,5-二-(叔丁基)-1,4-苯醌(t-BuBHQ))诱导的Ca2+动员的直接影响。2. 在无Ca2+内流的情况下,用Fura-2评估胞质Ca2+浓度。添加5 microM NO可使静息人血小板的基础胞质[Ca2+]增加48%,而较低浓度(0点1 microM)未引起显著变化。这种由NO诱导的Ca2+增加与胞质[Ca2+] 的基础水平呈负相关。3. NO预处理30至120秒可使0点10 u ml-1凝血酶诱发的瞬时[Ca2+]i峰值降低42%至57%,并强烈减弱1 microM毒胡萝卜素或20 microM t-BuBHQ诱导的[Ca2+]i上升的初始速率。毒胡萝卜素反应的两个组成部分,即由于Ca2+泵抑制导致的Ca2+释放和血栓素A2依赖性自放大机制,均被NO抑制。随后的刺激仍能引发Ca2+释放这一观察结果表明存在对NO不敏感的Ca2+储存库。4. 这些发现表明,一氧化氮可调节未受刺激的人血小板中的基础胞质[Ca2+],并减少由受体刺激或Ca(2+)-ATP酶抑制剂诱发的来自对NO敏感的内部储存库的Ca2+动员。这突出了一氧化氮在调节血小板Ca2+处理中的重要作用。

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