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首页> 外文期刊>Journal of Neurophysiology >Proton sensitivity Ca2+ permeability and molecular basis of acid-sensing ion channels expressed in glabrous and hairy skin afferents.
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Proton sensitivity Ca2+ permeability and molecular basis of acid-sensing ion channels expressed in glabrous and hairy skin afferents.

机译:质子敏感性Ca 2+渗透性和在毛状和毛状皮肤传入中表达的酸敏感离子通道的分子基础。

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We contrasted the physiology and peripheral targets of subclassified nociceptive and nonnociceptive afferents that express acid-sensing ion channel (ASIC)-like currents. The threshold for current activation was similar in eight distinct cell subclasses regardless of functional modality (pH 6.8). When potency was determined from concentration-response curves, nonnociceptors exhibited currents with significantly greater potency than that of all but one class of nociceptors (pH50 = 6.54 and 6.75 vs. 6.20-6.34). In nonnociceptive cells, acid transduction was also confined to a very narrow range (0.1-0.3 vs. 0.8-1.4 pH units for nociceptors). Simultaneous whole cell recording and ratiometric imaging of three peptidergic nociceptive classes were consistent with the expression of Ca2+ -permeable ASICs. Sensitivity to psalmotoxin and flurbiprofen indicated the presence of Ca2+ -permeable ASIC1a. Immunocytochemistry on these subclassified populations revealed a differential distribution of five ASIC proteins consistent with Ca2+ permeability and differential kinetics of proton-gated currents (type 5: ASIC1a, 1b, 2a, 2b, 3; type 8a: ASIC1a, 1b, 3; type 8b: ASIC1a, 1b, 2a, 2b, 3). Using DiI tracing, we found that nociceptive classes had discrete peripheral targets. ASIC-expressing types 8a and 9 projected to hairy skin, but only types 8a and 13 projected to glabrous skin. Non-ASIC-expressing types 2 and 4 were present only in hairy skin. We conclude that ASIC-expressing nociceptors differ from ASIC-expressing nonnociceptors mainly by range of proton reactivity. ASIC- as well as non-ASIC-expressing nociceptors have highly distinct cutaneous targets, and only one class was consistent with the existence of a generic C polymodal nociceptor (type 8a).
机译:我们对比了亚类的痛觉和非痛觉传入的生理和外围目标,这些传入表达酸感应离子通道(ASIC)样电流。电流激活的阈值在八个不同的细胞亚类中均相似,而与功能形式(pH 6.8)无关。当从浓度-响应曲线确定效价时,非伤害感受器的电流显示出比除一类伤害感受器以外的所有感受器都要强大的电流(pH50 = 6.54和6.75对6.20-6.34)。在非伤害感受性细胞中,酸转导也被限制在非常狭窄的范围内(伤害感受器的pH单位为0.1-0.3与0.8-1.4 pH单位)。三种肽能感受伤害类别的同时全细胞记录和比例成像与Ca2 +渗透性ASIC的表达一致。对psalmotoxin和氟比洛芬的敏感性表明存在Ca2 +渗透性ASIC1a。对这些亚分类人群的免疫细胞化学分析显示,五种ASIC蛋白质的差异分布与Ca2 +渗透性和质子门控电流的动力学差异一致(类型5:ASIC1a,1b,2a,2b,3;类型8a:ASIC1a,1b,3;类型8b :ASIC1a,1b,2a,2b,3)。使用DiI跟踪,我们发现伤害感受类具有离散的外围目标。表达ASIC的类型8a和9投射到毛发皮肤上,但是只有类型8a和13投射到无毛皮肤上。非ASIC表达类型2和4仅存在于毛发皮肤中。我们得出的结论是,表达ASIC的伤害感受器与表达ASIC的伤害感受器的主要区别在于质子反应性的范围。 ASIC和非ASIC表达的伤害感受器具有高度不同的皮肤靶点,只有一类与通用C多峰伤害感受器(类型8a)一致。

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