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胆碱能尿道刷状细胞广泛分布于胎盘哺乳动物体内。

Cholinergic urethral brush cells are widespread throughout placental mammals.

作者信息

Deckmann Klaus, Krasteva-Christ Gabriela, Rafiq Amir, Herden Christine, Wichmann Judy, Knauf Sascha, Nassenstein Christina, Grevelding Christoph G, Dorresteijn Adriaan, Chubanov Vladimir, Gudermann Thomas, Bschleipfer Thomas, Kummer Wolfgang

机构信息

Institute for Anatomy and Cell Biology, Justus-Liebig-University, 35385 Giessen, Germany.

Institute for Anatomy and Cell Biology, Justus-Liebig-University, 35385 Giessen, Germany; German Center for Lung Research (DZL), Germany; Institute for Anatomy and Cell Biology, Julius-Maximilians-University Wuerzburg, Koellikerstrasse 6, 97070 Wuerzburg, Germany.

出版信息

Int Immunopharmacol. 2015 Nov;29(1):51-6. doi: 10.1016/j.intimp.2015.05.038. Epub 2015 Jun 1.

Abstract

We previously identified a population of cholinergic epithelial cells in murine, human and rat urethrae that exhibits a structural marker of brush cells (villin) and expresses components of the canonical taste transduction signaling cascade (α-gustducin, phospholipase Cβ2 (PLCβ2), transient receptor potential cation channel melanostatin 5 (TRPM5)). These cells serve as sentinels, monitoring the chemical composition of the luminal content for potentially hazardous compounds such as bacteria, and initiate protective reflexes counteracting further ingression. In order to elucidate cross-species conservation of the urethral chemosensory pathway we investigated the occurrence and molecular make-up of urethral brush cells in placental mammals. We screened 11 additional species, at least one in each of the five mammalian taxonomic units primates, carnivora, perissodactyla, artiodactyla and rodentia, for immunohistochemical labeling of the acetylcholine synthesizing enzyme, choline acetyltransferase (ChAT), villin, and taste cascade components (α-gustducin, PLCβ2, TRPM5). Corresponding to findings in previously investigated species, urethral epithelial cells with brush cell shape were immunolabeled in all 11 mammals. In 8 species, immunoreactivities against all marker proteins and ChAT were observed, and double-labeling immunofluorescence confirmed the cholinergic nature of villin-positive and chemosensory (TRPM5-positive) cells. In cat and horse, these cells were not labeled by the ChAT antiserum used in this study, and unspecific reactions of the secondary antiserum precluded conclusions about ChAT-expression in the bovine epithelium. These data indicate that urethral brush cells are widespread throughout the mammalian kingdom and evolved not later than about 64.5millionyears ago.

摘要

我们之前在小鼠、人类和大鼠的尿道中鉴定出了一群胆碱能上皮细胞,这些细胞呈现刷状细胞的结构标记物(绒毛蛋白),并表达经典味觉转导信号级联反应的成分(α - 味导素、磷脂酶Cβ2(PLCβ2)、瞬时受体电位阳离子通道M型5(TRPM5))。这些细胞充当哨兵,监测管腔内容物的化学成分,以检测诸如细菌等潜在有害化合物,并引发保护性反射以对抗进一步入侵。为了阐明尿道化学感受通路的跨物种保守性,我们研究了胎盘哺乳动物尿道刷状细胞的存在情况和分子组成。我们筛选了另外11个物种,在灵长目、食肉目、奇蹄目、偶蹄目和啮齿目这五个哺乳动物分类单元中各至少选了一个物种,用于对乙酰胆碱合成酶、胆碱乙酰转移酶(ChAT)、绒毛蛋白和味觉级联反应成分(α - 味导素、PLCβ2,、TRPM5)进行免疫组织化学标记。与之前研究的物种结果一致,在所有11种哺乳动物中均发现了具有刷状细胞形态的尿道上皮细胞被免疫标记。在8个物种中,观察到了针对所有标记蛋白和ChAT的免疫反应性,双标免疫荧光证实了绒毛蛋白阳性和化学感受性(TRPM5阳性)细胞的胆碱能性质。在猫和马中,本研究使用的ChAT抗血清未标记这些细胞,并且二抗的非特异性反应使得无法得出关于牛上皮细胞中ChAT表达的结论。这些数据表明,尿道刷状细胞在整个哺乳动物界广泛存在,并且至少在约6450万年前就已进化形成。

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