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首页> 外文期刊>Life sciences >Cholinergic receptors in the murine oviduct: inventory and coupling to intracellular calcium concentration.
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Cholinergic receptors in the murine oviduct: inventory and coupling to intracellular calcium concentration.

机译:鼠输卵管中的胆碱能受体:库存和与细胞内钙浓度的耦合。

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摘要

In the oviduct, muscarinic acetylcholine receptors (MR) are linked with motility regulation and nicotinic receptors (nAChR) with ectopic pregnancy. We here aimed to determine the repertoire of cholinergic receptor expression in the murine oviduct and their functional coupling to regulation of intracellular calcium concentration ([Ca(2+)](i)).Cholinergic receptor transcripts were assessed by RT-PCR in oviductal segments (ampulla, isthmus, uterotubar junction) in all cyclic stages and pregnancy, and in laser-microdissected samples of epithelium and smooth muscle, nAChR subunit α3 distribution in tissue sections using an appropriate genetic reporter mouse strain. [Ca(2+)](i) responses were monitored in ciliated and non-ciliated oviductal cells isolated from wild-type and MR subtypes 1 and 3 gene deficient mice.Transcripts for all MR subtypes (M1-M5) are constantly expressed whereas there is some variability in nAChR expression from individual to individual. The qualitative expression pattern is independent from the hormonal status of the animal, except for nAChR α7, which is less present during pregnancy. The epithelium expresses M1, M3, nAChR α7 (data from laser-assisted microdissection) and nAChR α3 (ultrastructural investigation of reporter mice). MR dominate over nAChR in increasing [Ca(2+)](i) with being M3 the major, but not sole subtype driving this effect. The general nAChR inhibitor mecamylamine enhances muscarinic and purinergic responses.In conclusion, the murine oviduct is endowed with a multiplicity of muscarinic and nicotinic receptors subtypes that, with respect to regulation of [Ca(2+)](i), are inversely linked to each other. The major, but not sole, cholinergic receptor driving increase in [Ca(2+)](i) is M3.
机译:在输卵管中,毒蕈碱乙酰胆碱受体(MR)与运动调节有关,而烟碱受体(nAChR)与异位妊娠有关。我们在这里旨在确定小鼠输卵管中胆碱能受体表达的组成及其与调节细胞内钙浓度([Ca(2 +)](i))的功能耦合。通过RT-PCR在输卵管段评估胆碱能受体转录本(壶腹,峡部,子宫输卵管连接)在所有循环阶段和怀孕期间,以及在激光显微切割的上皮和平滑肌样本中,使用适当的遗传报告基因小鼠品系,nAChR亚基α3在组织切片中的分布。在从野生型和MR亚型1和3基因缺陷小鼠中分离的纤毛和非纤毛输卵管细胞中监测[Ca(2 +)](i)反应。所有MR亚型(M1-M5)的转录本均不断表达,而个体之间的nAChR表达存在一定差异。定性表达模式独立于动物的荷尔蒙状态,除了nAChRα7外,后者在怀孕期间较少出现。上皮细胞表达M1,M3,nAChRα7(来自激光辅助显微切割的数据)和nAChRα3(报告小鼠的超微结构研究)。在增加[Ca(2 +)](i)方面,MR胜过nAChR,而M3是主要的亚型,但不是驱动该效应的唯一亚型。一般的nAChR抑制剂美甲胺可增强毒蕈碱和嘌呤能反应。总之,鼠输卵管具有多种毒蕈碱和烟碱样受体亚型,与[Ca(2 +)](i)的调节有关彼此。 [Ca(2 +)](i)中主要但不是唯一的胆碱能受体驱动增加是M3。

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