首页> 外文期刊>Journal of Neurocytology: A Journal of Cellular Neurobiology >Espin cytoskeletal proteins in the sensory cells of rodent taste buds.
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Espin cytoskeletal proteins in the sensory cells of rodent taste buds.

机译:啮齿类动物味蕾感觉细胞中的Espin细胞骨架蛋白。

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Espins are multifunctional actin-bundling proteins that are highly enriched in the microvilli of certain chemosensory and mechanosensory cells, where they are believed to regulate the integrity and/or dimensions of the parallel-actin-bundle cytoskeletal scaffold. We have determined that, in rats and mice, affinity purified espin antibody intensely labels the lingual and palatal taste buds of the oral cavity and taste buds in the pharyngo-laryngeal region. Intense immunolabeling was observed in the apical, microvillar region of taste buds, while the level of cytoplasmic labeling in taste bud cells was considerably lower. Taste buds contain tightly packed collections of sensory cells (light, or type II plus type III) and supporting cells (dark, or type I), which can be distinguished by microscopic features and cell type-specific markers. On the basis of results obtained using an antigen-retrieval method in conjunction with double immunofluorescence for espin and sensory taste cell-specific markers, we propose that espins are expressed predominantly in the sensory cells of taste buds. In confocal images of rat circumvallate taste buds, we counted 21.5 +/- 0.3 espin-positive cells/taste bud, in agreement with a previous report showing 20.7 +/- 1.3 light cells/taste bud when counted at the ultrastructural level. The espin antibody labeled spindle-shaped cells with round nuclei and showed 100% colocalization with cell-specific markers recognizing all type II [inositol 1,4,5-trisphosphate receptor type III (IP(3)R(3))(,) alpha-gustducin, protein-specific gene product 9.5 (PGP9.5)] and a subpopulation of type III (IP(3)R(3), PGP9.5) taste cells. On average, 72%, 50%, and 32% of the espin-positive taste cells were labeled with antibodies to IP(3)R(3), alpha-gustducin, and PGP9.5, respectively. Upon sectional analysis, the taste buds of rat circumvallate papillae commonly revealed a multi-tiered, espin-positive apical cytoskeletal apparatus. One espin-positive zone, a collection of approximately 3 mum-long microvilli occupying the taste pore, was separated by an espin-depleted zone from a second espin-positive zone situated lower within the taste pit. This latter zone included espin-positive rod-like structures that occasionally extended basally to a depth of 10-12 mum into the cytoplasm of taste cells. We propose that the espin-positive zone in the taste pit coincides with actin bundles in association with the microvilli of type II taste cells, whereas the espin-positive microvilli in the taste pore are the single microvilli of type III taste cells.
机译:Espins是多功能肌动蛋白束缚蛋白,高度富含某些化学感觉和机械感觉细胞的微绒毛,据信它们可调节平行肌动蛋白束细胞骨架的完整性和/或尺寸。我们已经确定,在大鼠和小鼠中,亲和纯化的espin抗体强烈标记了口腔的舌和pa味蕾以及咽喉区域的味蕾。在味蕾的顶端,微绒毛区域观察到强烈的免疫标记,而味蕾细胞中的细胞质标记水平明显较低。味蕾包含紧密堆积的感觉细胞(浅色或II型加III型)和支持细胞(深色或I型)的集合,这些特征可以通过微观特征和特定于细胞类型的标记物来区分。根据使用抗原提取方法结合双免疫荧光法对espin和感官味觉细胞特异性标记物获得的结果,我们建议espins主要在味蕾的感官细胞中表达。在大鼠周缘味蕾的共聚焦图像中,我们计数了21.5 +/- 0.3 espin阳性细胞/味蕾,与先前的报告一致,即在超微结构水平上显示20.7 +/- 1.3轻细胞/味蕾。 espin抗体标记具有圆核的纺锤形细胞,并显示与识别所有II型[肌醇1,4,5-三磷酸受体III(IP(3)R(3))(,)的细胞特异性标记的100%共定位α-gustducin,蛋白特异性基因产物9.5(PGP9.5)]和III型(IP(3)R(3),PGP9.5)味觉细胞亚群。平均而言,分别有72%,50%和32%的espin阳性味觉细胞分别被IP(3)R(3),α-gustducin和PGP9.5抗体标记。通过截面分析,大鼠环周乳头的味蕾通常显示出多层的,espin阳性的顶端细胞骨架。一个旋涂阳性区域,即约3毫米长的微绒毛的集合,占据了味气孔,被一个旋涂耗尽的区域与第二个旋涂阳性区域隔开,第二个旋涂阳性区域位于味坑的下方。后一个区域包括espin阳性杆状结构,偶尔向味觉细胞的胞质基部延伸至10-12微米的深度。我们建议味坑中的espin阳性区域与肌动蛋白束相符,与II型味觉细胞的微绒毛相关,而味孔中的​​espin阳性微绒毛是III型味觉细胞的单个微绒毛。

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