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pH对青蛙对碱金属和碱土金属氯化物味觉反应的影响。

Effects of pH on frog gustatory responses to chloride salts of alkali-metal and alkali-earth-metal.

作者信息

Kumai T, Nomura H

出版信息

Jpn J Physiol. 1980;30(3):345-55. doi: 10.2170/jjphysiol.30.345.

DOI:10.2170/jjphysiol.30.345
PMID:7420772
Abstract

The pH effects on frog gustatory responses to alkali-metal and alkali-earth-metal chloride salts were examined using single fungi-form papilla preparations. Responses to 0.1-0.5 M NaCl were clearly dependent upon the pH of the stimulating solutions. The responses increased as the pH decreased from 6.5 to 4.5 and were almost completely suppressed at pH's above 6.5. There was no significant difference in the pH dependency of the response among alkali-metal chlorides. HCl solutions elicited only a poor response under conditions in which the water response was suppressed by the simultaneous presence of a low NaCl concentration. Responses to alkali-earth-metal chlorides varied in their pH dependency. Response to CaCl2 was slightly affected by pH changes from 4.5 to 9.0, response to SrCl2 was considerably suppressed in the alkaline region, and responses to BaCl2 and MgCl2 were strongly suppressed at pH's above 6.5. BeCl2 solutions showed less marked stimulating effects over the pH range tested. The differences in pH dependency described above suggest the existence of two kinds of receptor sites, one being pH-insensitive sites responsible for the calcium response and the other pH-sensitive sites responsible for the sodium response. A cross-adaptation test appeared to support this possibility. Assuming that the pH effect mentioned is related to changes in the state of ionization of the receptor molecule, the pKa of the ionizable group responsible for the sodium response was determined to be approximately 5.5.

摘要

使用单个菌状乳头制备物研究了pH值对青蛙对碱金属和碱土金属氯化物盐味觉反应的影响。对0.1 - 0.5M NaCl的反应明显取决于刺激溶液的pH值。随着pH值从6.5降至4.5,反应增强,而在pH值高于6.5时反应几乎完全受到抑制。碱金属氯化物之间反应的pH依赖性没有显著差异。在低NaCl浓度同时存在抑制水反应的条件下,HCl溶液仅引起较弱的反应。对碱土金属氯化物的反应在pH依赖性方面有所不同。对CaCl2的反应受pH值从4.5到9.0变化的影响较小,对SrCl2的反应在碱性区域受到相当大的抑制,而对BaCl2和MgCl2的反应在pH值高于6.5时受到强烈抑制。BeCl2溶液在所测试的pH范围内显示出不太明显的刺激作用。上述pH依赖性的差异表明存在两种受体位点,一种是对pH不敏感的负责钙反应的位点,另一种是对pH敏感的负责钠反应的位点。交叉适应试验似乎支持了这种可能性。假设上述pH效应与受体分子电离状态的变化有关,则负责钠反应的可电离基团的pKa被确定约为5.5。

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