首页> 外文期刊>The Journal of Comparative Neurology >Differential localization of putative amino acid receptors in taste buds of the channel catfish, Ictalurus punctatus.
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Differential localization of putative amino acid receptors in taste buds of the channel catfish, Ictalurus punctatus.

机译:推测的氨基酸受体在the鱼Ictalurus punctatus味蕾中的差异化定位。

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The taste system of catfish, having distinct taste receptor sites for L-alanine and L-arginine, is highly sensitive to amino acids. A previously described monoclonal antibody (G-10), which inhibits L-alanine binding to a partial membrane fraction (P2) derived from catfish (Ictalurus punctatus) taste epithelium, was found in Western blots to recognize a single band, at apparent MW of 113,000 D. This MW differs from the apparent MW for the presumed arginine receptor identified previously by PHA-E lectin affinity. In order to test whether PHA-E lectin actually reacts with the arginine-receptor, reconstituted membrane proteins partially purified by PHA-E affinity were used in artificial lipid bilayers. These reconstituted channels exhibited L-arginine-activated activity similar to that found in taste cell membranes. Accordingly, we utilized the PHA-E lectin and G-10 antibody as probes to differentially localize the L-alanine and L-arginine binding sites on the apical surface of catfish taste buds. Each probe labels numerous, small (0.5-1.0 micron) patches within the taste pore of each taste bud. This observation suggests that each bud is not tuned to a single taste substance, but contains putative receptor sites for both L-arginine and L-alanine. Further, analysis of double-labeled tissue reveals that the PHA-E and G-10 sites tend to be separate within each taste pore. These findings imply that in catfish, individual taste cells preferentially express receptors to either L-arginine or L-alanine. In addition, PHA-E binds to the apices of solitary chemoreceptor cells in the epithelium, indicating that this independent chemoreceptor system may utilize some receptor sites similar to those in taste buds.
机译:L鱼的味觉系统对L-丙氨酸和L-精氨酸具有独特的味觉受体位点,对氨基酸高度敏感。在Western印迹中发现一种先前描述的单克隆抗体(G-10),该抗体抑制L-丙氨酸与to鱼(Ictalurus punctatus)味觉上皮细胞的部分膜部分(P2)结合,从而在表观MW下识别一条条带。 113,000D。此分子量不同于先前通过PHA-E凝集素亲和力鉴定的假定精氨酸受体的表观分子量。为了测试PHA-E凝集素是否确实与精氨酸受体反应,在人工脂质双层中使用了通过PHA-E亲和力部分纯化的重组膜蛋白。这些重构的通道表现出类似于在味觉细胞膜中发现的L-精氨酸激活的活性。因此,我们利用PHA-E凝集素和G-10抗体作为探针来差异定位cat鱼味蕾根尖表面的L-丙氨酸和L-精氨酸结合位点。每个探针在每个味蕾的味觉孔内标记许多小(0.5-1.0微米)小块。该观察结果表明,每个芽均未调节至单一味觉物质,而是包含L-精氨酸和L-丙氨酸的推定受体位点。此外,对双标签组织的分析表明,PHA-E和G-10位点倾向于在每个味孔内分开。这些发现暗示在cat鱼中,单个味觉细胞优先表达L-精氨酸或L-丙氨酸的受体。此外,PHA-E与上皮中孤立的化学感受器细胞的末端结合,表明这种独立的化学感受器系统可能利用了与味蕾中类似的一些受体位点。

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