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肉蝇唇糖受体中多个受体位点对氨基酸和小肽的立体特异性。

Stereospecificity of multiple receptor sites in a labellar sugar receptor of the fleshfly for amino acids and small peptides.

作者信息

Shimada I, Tanimura T

出版信息

J Gen Physiol. 1981 Jan;77(1):23-39. doi: 10.1085/jgp.77.1.23.

Abstract

N-Formylation and N-methylation of the alpha-amino group of L-phenylalanine result in extremely decreased responses of the labellar sugar receptor of the fleshfly, whereas the same structural alteration of L-valine hardly affects the response. Methyl esterification of the alpha-carboxyl group of phenylalanine, on the other hand, maintains the response to some extent, but similar treatment of valine completely diminishes the response. The aromatic structure in phenylalanine is not essential for stimulation. These results suggest a substantial difference in the stereospecificities and functional group specificities of the furnase (F) and aliphatic carboxylate (T) sites in the sugar receptor. The effect of small peptides on the sugar receptor was examined systematically. Their effectiveness depends mainly on the place of the constituent amino acids rather than on their composition, indicating the decisive role that certain aliphatic amino acids in the C-terminal position play in stimulation. Remarkable regularities in the stimulating effectiveness of small peptides exactly correspond to the stereospecificity of each receptor site. We propose two hypothetical models of the F and T sites, which involve three and two subsites, respectively, that are capable of hydrogen bond formation. The F and T sites also have a hydrophobic subsite that discriminates the R groups of the stimulants and a few spatial barriers.

摘要

L-苯丙氨酸α-氨基的N-甲酰化和N-甲基化导致肉蝇唇瓣糖受体的反应极度降低,而L-缬氨酸的相同结构改变几乎不影响反应。另一方面,苯丙氨酸α-羧基的甲酯化在一定程度上维持了反应,但对缬氨酸进行类似处理则完全消除了反应。苯丙氨酸中的芳香结构对于刺激并非必不可少。这些结果表明糖受体中富尔纳斯(F)位点和脂肪族羧酸盐(T)位点在立体特异性和官能团特异性方面存在实质性差异。系统研究了小肽对糖受体的影响。它们的有效性主要取决于组成氨基酸的位置而非其组成,这表明C端位置的某些脂肪族氨基酸在刺激中起决定性作用。小肽刺激有效性的显著规律与每个受体位点的立体特异性完全对应。我们提出了F位点和T位点的两种假设模型,分别涉及能够形成氢键的三个和两个亚位点。F位点和T位点还具有一个疏水亚位点,用于区分刺激物的R基团以及一些空间屏障。

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本文引用的文献

1
Generator potential of insect chemoreceptor.昆虫化学感受器的发生器电位
Science. 1959 Oct 9;130(3380):922. doi: 10.1126/science.130.3380.922.
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Structure-taste relationships of some dipeptides.
J Am Chem Soc. 1969 May 7;91(10):2684-91. doi: 10.1021/ja01038a046.
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Chemical treatments of the labellar sugar receptor of the fleshfly.
J Insect Physiol. 1975 Sep;21(9):1565-74. doi: 10.1016/0022-1910(75)90193-6.

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