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Genetic Labeling of Car4-expressing Cells Reveals Subpopulations of Type III Taste Cells

机译:Car4表达细胞的遗传标记显示III型味道细胞的亚群

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Carbonic anhydrases form an enzyme family of 16 members, which reversibly catalyze the hydration of carbon dioxide to bicarbonate and protons. In lung, kidney, and brain, presence of carbonic anhydrases is associated with protons and bicarbonate transport in capillary endothelium of lung, reabsorption of bicarbonate in proximal renal tubules, and extracellular buffering. In contrast, their role in taste is less clear. Recently, carbonic anhydrase IV expression was detected in sour-sensing presynaptic taste cells and was associated with the taste of carbonation, yet the precise role and cell population remained uncertain. To examine the role of carbonic anhydrase 4-expressing cells in taste reception, we generated a mouse strain carrying a modified allele of the carbonic anhydrase 4 gene in which the coding region of the red fluorescent protein monomeric Cherry is attached to that of carbonic anhydrase 4 via an internal ribosome entry site. Monomeric Cherry fluorescence was detected in lingual papillae as well as taste buds of soft palate and naso-incisor duct. However, expression patterns on the tongue differ between posterior and fungiform papillae. Whereas monomeric Cherry auto-fluorescence was almost always co-localized with presynaptic cell markers aromatic L-amino-acid decarboxylase, synaptosomal-associated protein 25 or glutamic acid decarboxylase 67 in fungiform papillae and taste buds of palate and naso-incisor duct, monomeric Cherry-positive cells in posterior tongue papillae represent only a subpopulation of presynaptic cells. We conclude that this model is well suited for detailed investigation into the role of carbonic anhydrase in gustation and other processes.
机译:碳酸酐酶形成16个成员的酶系列,可逆地催化二氧化碳的水合碳酸氢盐和质子。在肺,肾和大脑中,碳酸酐酶的存在与肺炎毛细管内皮的质子和碳酸氢盐转运相关,偏肾小管中的碳酸氢盐的重吸收,细胞外缓冲。相比之下,他们在味道中的作用不太清楚。最近,在酸感测的突触前味细胞中检测到碳酸酐酶IV表达,并且与碳酸化的味道有关,但精确的作用和细胞群保持不确定。为了检查碳酸酐酶4表达味道接受中的表达细胞的作用,我们产生携带碳酸酐酶4基因的改性等位基因的小鼠菌株,其中红色荧光蛋白单体樱桃的编码区附着在碳酸酐酶4的编码区域通过内部核糖体入口部位。在舌乳乳头和软腭和鼻肠管的味蕾中检测到单体樱桃荧光。然而,舌头上的表达模式不同于后验和无菌乳头。虽然单体樱桃自动荧光几乎总是用突触式细胞标记芳族L-氨基酸脱羧酶,突触体相关蛋白25或谷氨酸脱羧酶67在菌乳头和味道和鼻腔切入管道的味蕾中,单体樱桃后舌乳头的阳性细胞仅代表突触前细胞的亚群。我们得出结论,该模型非常适合于详细调查碳酸酐酶在烧烤和其他过程中的作用。

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