Riba R, Patel B, Aburima A, Naseem K M
Centre for Atherothrombosis Research, Medical Biosciences, University of Bradford, Bradford, UK.
J Thromb Haemost. 2008 Dec;6(12):2121-31. doi: 10.1111/j.1538-7836.2008.03179.x. Epub 2008 Oct 1.
Platelet-derived nitric oxide (NO) has been shown to play conflicting roles in platelet function, although it is accepted that NO mediates its actions through soluble guanylyl cyclase (sGC). This confusion concerning the roles of platelet NO may have arisen because of an uncharacterized mechanism for activation of sGC.
To examine the ability of the novel platelet agonist globular adiponectin (gAd) to stimulate the NO-independent cGMP-protein kinase G (PKG) signaling cascade.
We used three independent markers of NO signaling, [(3)H]l-citrulline production, cGMP accrual, and immunoblotting of vasodilator-stimulated phosphoprotein (VASP), to examine the NO signaling cascade in response to gAd.
gAd increased platelet cGMP formation, resulting in a dose- and time-dependent increase in phospho-VASP(157/239). Phosphorylation of VASP in response to gAd was mediated by both protein kinase A and PKG. Importantly, cGMP formation occurred in the absence of NO synthase (NOS) activation and in the presence of NOS inhibitors. Indeed, inhibition of the NOS signaling cascade had no influence on gAd-mediated platelet aggregation. Exploration of the mechanism demonstrated that NO-independent cGMP formation, phosphorylation of VASP and association of sGCalpha(1) with heat shock protein-90 induced by gAd were blocked under conditions that inhibited Src kinases, implying a tyrosine kinase-dependent mechanism. Indeed, sGCalpha1 was reversibly tyrosine phosphorylated in response to gAd, collagen, and collagen-related peptide, an effect that required Src kinases and downstream Ca(2+) mobilization.
These data demonstrate activation of the platelet cGMP signaling cascade by a novel tyrosine kinase-dependent mechanism in the absence of NO.
血小板衍生的一氧化氮(NO)在血小板功能中发挥着相互矛盾的作用,尽管人们认为NO通过可溶性鸟苷酸环化酶(sGC)介导其作用。关于血小板NO作用的这种困惑可能是由于sGC激活机制尚未明确所致。
研究新型血小板激动剂球状脂联素(gAd)刺激不依赖NO的环磷酸鸟苷 - 蛋白激酶G(PKG)信号级联反应的能力。
我们使用了三种独立的NO信号标记物,即[³H] L - 瓜氨酸生成、cGMP积累以及血管舒张刺激磷蛋白(VASP)的免疫印迹,来检测对gAd作出反应的NO信号级联反应。
gAd增加血小板cGMP的形成,导致磷酸化VASP(157/239)呈剂量和时间依赖性增加。gAd诱导的VASP磷酸化由蛋白激酶A和PKG共同介导。重要的是,cGMP的形成在没有一氧化氮合酶(NOS)激活的情况下以及在存在NOS抑制剂的情况下都能发生。事实上,抑制NOS信号级联反应对gAd介导的血小板聚集没有影响。机制研究表明,在抑制Src激酶的条件下,gAd诱导的不依赖NO的cGMP形成、VASP磷酸化以及sGCalpha(1)与热休克蛋白 - 90的结合被阻断,这意味着存在酪氨酸激酶依赖性机制。实际上,sGCalpha1在对gAd、胶原和胶原相关肽作出反应时发生可逆的酪氨酸磷酸化,这种效应需要Src激酶和下游Ca²⁺动员。
这些数据表明在没有NO的情况下,通过一种新型酪氨酸激酶依赖性机制激活了血小板cGMP信号级联反应。