Department of Biochemistry, Quaid-I-Azam University, Islamabad, 45320, Pakistan.
Hemostasis and Platelet Research Laboratory, Division of Hematology and Central Hematology Laboratory, Lausanne University Hospital (CHUV) and University of Lausanne (UNIL), CH-1010, Lausanne, Switzerland.
Mol Biol Rep. 2024 Jan 22;51(1):177. doi: 10.1007/s11033-023-09116-7.
ADP-stimulated elevation of cytosolic Ca is an important effector mechanism for platelet activation. The rapidly elevating cytosolic Ca is also transported to mitochondrial matrix via Mitochondrial Ca Uniporter (MCU) and extruded via Na/Ca/Li Exchanger (NCLX). However, the exact contribution of MCU and NCLX in ADP-mediated platelet responses remains incompletely understood.
The present study aimed to elucidate the role of mitochondrial Ca transport in ADP-stimulated platelet responses by inhibition of MCU and NCLX with mitoxantrone (MTX) and CGP37157 (CGP), respectively. As these inhibitory strategies are reported to cause distinct effects on matrix Ca concentration, we hypothesized to observe opposite impact of MTX and CGP on ADP-induced platelet responses. Platelet aggregation profiling was performed by microplate-based spectrophotometery while p-selectin externalization and integrin αIIbβ3 activation were analyzed by fluorescent immunolabeling using flow cytometery. Our results confirmed the expression of both MCU and NCLX mRNAs with relatively low abundance of NCLX in human platelets. In line with our hypothesis, MTX caused a dose-dependent inhibition of ADP-induced platelet aggregation without displaying any cytotoxicity. Likewise, ADP-induced p-selectin externalization and integrin αIIbβ3 activation was also significantly attenuated in MTX-treated platelets. Concordantly, inhibition of NCLX with CGP yielded an accelerated ADP-stimulated platelet aggregation which was associated with an elevation of p-selectin surface expression and αIIbβ3 activation.
Together, these findings uncover a vital and hitherto poorly characterized role of mitochondrial Ca transporters in ADP-induced platelet activation.
ADP 刺激的细胞浆 Ca 升高是血小板激活的重要效应机制。快速升高的细胞浆 Ca 也通过线粒体 Ca 单向转运体(MCU)转运到线粒体基质,并通过 Na/Ca/Li 交换器(NCLX)排出。然而,MCU 和 NCLX 在 ADP 介导的血小板反应中的确切作用仍不完全清楚。
本研究旨在通过米托蒽醌(MTX)和 CGP37157(CGP)分别抑制 MCU 和 NCLX,阐明线粒体 Ca 转运在 ADP 刺激的血小板反应中的作用。由于这些抑制策略被报道对基质 Ca 浓度有不同的影响,我们假设 MTX 和 CGP 对 ADP 诱导的血小板反应会产生相反的影响。通过微孔板分光光度法进行血小板聚集分析,同时通过流式细胞术荧光免疫标记分析 P-选择素外排和整合素 αIIbβ3 激活。我们的结果证实了 MCU 和 NCLX 的 mRNA 在人血小板中均有表达,且 NCLX 的丰度相对较低。与我们的假设一致,MTX 剂量依赖性地抑制 ADP 诱导的血小板聚集,而没有显示出任何细胞毒性。同样,ADP 诱导的 P-选择素外排和整合素 αIIbβ3 激活在 MTX 处理的血小板中也显著减弱。相反,用 CGP 抑制 NCLX 导致 ADP 刺激的血小板聚集加速,同时伴随着 P-选择素表面表达和 αIIbβ3 激活的升高。
总之,这些发现揭示了线粒体 Ca 转运体在 ADP 诱导的血小板激活中具有重要的、迄今尚未充分描述的作用。