Wakabayashi Ichiro, Marumo Mikio, Graziani Annarita, Poteser Michael, Groschner Klaus
Department of Hygiene and Preventive Medicine, Yamagata University School of Medicine, Yamagata 990-9585, Japan.
Platelets. 2006 Nov;17(7):454-61. doi: 10.1080/09537100600757489.
The present study was designed to analyze the molecular basis of the intracellular pH-dependent capacitative Ca2+ entry (CCE) of human platelets and megakaryocytic cells, specifically to test the hypothesis that members of the classical transient receptor potential (TRPC) protein family are involved in the CCE pathway that is promoted by intracellular alkalosis. Human platelets as well as the tested megakaryocytic cell lines (CMK cells, MEG-01 cells) and HEK293 cells displayed thapsigargin-induced CCE and responded to monensin with comparable elevation in intracellular pH. Promotion of CCE by monensin-induced intracellular alkalosis, however, was profound in mature platelets, moderate in CMK cells and lacking in MEG-01 cells as well as in HEK293 cells. Analysis of the TRPC expression pattern by immunoblotting revealed that mature platelets and CMK cells express TRPC4 along with TRPC1 and TRPC3, while TRPC4 is lacking in MEG-01 cells. HEK293 cells displayed CCE characteristics as well as lack of TRPC4 expression similar to MEG-01 cells. Over-expression of TRPC4 in HEK293 cells was found to result in a gain of pH-sensitivity of CCE with clearly detectable promotion of CCE in response to monensin. These results suggest that platelet CCE channel complexes contain TRPC4 as a molecular component that determines sensitivity of CCE to intracellular alkalosis.
本研究旨在分析人血小板和巨核细胞内pH依赖性钙池调控性钙内流(CCE)的分子基础,具体而言是为了验证经典瞬时受体电位(TRPC)蛋白家族成员参与由细胞内碱化促进的CCE途径这一假说。人血小板以及受试的巨核细胞系(CMK细胞、MEG-01细胞)和HEK293细胞均表现出毒胡萝卜素诱导的CCE,并且对莫能菌素的反应是细胞内pH有类似升高。然而,莫能菌素诱导的细胞内碱化对成熟血小板中CCE的促进作用显著,在CMK细胞中作用中等,而在MEG-01细胞和HEK293细胞中则不存在这种促进作用。通过免疫印迹分析TRPC表达模式发现,成熟血小板和CMK细胞表达TRPC4以及TRPC1和TRPC3,而MEG-01细胞中缺乏TRPC4。HEK293细胞表现出与MEG-01细胞类似的CCE特征以及缺乏TRPC4表达。发现在HEK293细胞中过表达TRPC4会导致CCE对pH的敏感性增加,对莫能菌素的反应中CCE有明显可检测到的促进作用。这些结果表明,血小板CCE通道复合物包含TRPC4作为决定CCE对细胞内碱化敏感性的分子成分。