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Molecular and electrophysiological characterization of transient receptor potential ion channels in the primary murine megakaryocyte

机译:小鼠原代巨核细胞中瞬时受体电位离子通道的分子和电生理特性

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摘要

The molecular identity of platelet Ca2+ entry pathways is controversial. Furthermore, the extent to which Ca2+-permeable ion channels are functional in these tiny, anucleate cells is difficult to assess by direct electrophysiological measurements. Recent work has highlighted how the primary megakaryocyte represents a bona fide surrogate for studies of platelet signalling, including patch clamp recordings of ionic conductances. We have now screened for all known members of the transient receptor potential (TRP) family of non-selective cation channels in murine megakaryocytes following individual selection of these rare marrow cells using glass micropipettes. RT-PCR detected messages for TRPC6 and TRPC1, which have been reported in platelets and megakaryocytic cell lines, and TRPM1, TRPM2 and TRPM7, which to date have not been demonstrated in cells of megakaryocytic/platelet lineage. Electrophysiological recordings demonstrated the presence of functional TRPM7, a constitutively active cation channel sensitive to intracellular Mg2+, and TRPM2, an ADP-ribose-dependent cation channel activated by oxidative stress. In addition, the electrophysiological and pharmacological properties of the non-selective cation channels stimulated by the physiological agonist ADP are consistent with a major role for TRPC6 in this G-protein-coupled receptor-dependent Ca2+ influx pathway. This study defines for the first time the principal TRP channels within the primary megakaryocyte, which represent candidates for Ca2+ influx pathways activated by a diverse range of stimuli in the platelet and megakaryocyte.
机译:血小板Ca 2 + 进入途径的分子同一性尚存争议。此外,在这些微小的无核细胞中,Ca 2 + 可渗透离子通道的功能范围难以通过直接电生理学测量来评估。最近的工作突出了原代巨核细胞如何代表一种真正的替代品,用于研究血小板信号传导,包括离子电导的膜片钳记录。现在,我们已经使用玻璃微量移液器分别筛选了这些罕见的骨髓细胞后,筛选了小鼠巨核细胞中非选择性阳离子通道的瞬时受体电位(TRP)家族的所有已知成员。 RT-PCR检测到关于TRPC6和TRPC1的信息,这些信息已在血小板和巨核细胞系中报道,而TRPM1,TRPM2和TRPM7迄今尚未在巨核/血小板谱系细胞中得到证实。电生理学记录表明存在功能性TRPM7(对细胞内Mg 2 + 敏感的组成型活性阳离子通道)和TRPM2(通过氧化应激激活的ADP-核糖依赖性阳离子通道)的存在。此外,生理激动剂ADP刺激的非选择性阳离子通道的电生理和药理特性与TRPC6在这种G蛋白偶联受体依赖性Ca 2 + 涌入中的主要作用相一致。途径。这项研究首次定义了原核巨核细胞中的主要TRP通道,这些通道代表了由血小板和巨核细胞中各种刺激激活的Ca 2 + 内流途径的候选者。

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