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将主要的α-银环蛇毒素结合位点精细定位到电鳐乙酰胆碱受体的α189 - 195残基。189、190和195残基对于结合是必不可少的。

Fine localization of the major alpha-bungarotoxin binding site to residues alpha 189-195 of the Torpedo acetylcholine receptor. Residues 189, 190, and 195 are indispensable for binding.

作者信息

Tzartos S J, Remoundos M S

机构信息

Department of Biochemistry, Hellenic Pasteur Institute, Athens, Greece.

出版信息

J Biol Chem. 1990 Dec 15;265(35):21462-7.

PMID:2254308
Abstract

alpha-Bungarotoxin blocks acetylcholine-mediated ion channel opening of peripheral acetylcholine receptors (AChR). A major binding region for alpha-bungarotoxin has been recently identified within parts of the segment 170-204 of the alpha-subunit. We used the Pepscan systematic peptide synthesis system to determine the minimum Torpedo AChR segment required for alpha-bungarotoxin binding and to investigate the role of each residue within this segment. Continuously overlapping decapeptides within alpha 179-203 and several decapeptides covering other alpha-subunit sequences showed that alpha 188-197 and alpha 189-198 exhibited the best 125I-alpha-bungarotoxin binding activity (KD = 7.3 x 10(-8) and 4.3 x 10(-8) M, respectively). Several continuously overlapping nona-, octa-, hepta-, hexa-, and tetrapeptides showed that the heptapeptide alpha 189-195 was the minimum sequence with high binding activity (KD = 5.6 x 10(-8)M). d-Tubocurarine, but not carbamylcholine, blocked toxin binding. Twenty-six analogs of the alpha 188-197, most having 1 residue substituted by Ala or Gly, showed that Tyr189, Tyr190, and especially Asp195 were indispensable for 125I-alpha-bungarotoxin binding. Cys192 and Cys193 could be substituted by other amino acids, proving that the disulfide bond between alpha 192-193 was not required for alpha-bungarotoxin binding. The decreased alpha-bungarotoxin binding capacity of the equivalent human muscle AChR alpha 188-197 peptide was the result of substitution of Tyr by Thr at alpha 189.

摘要

α-银环蛇毒素可阻断外周乙酰胆碱受体(AChR)由乙酰胆碱介导的离子通道开放。最近已在α亚基的170-204片段的部分区域内确定了α-银环蛇毒素的一个主要结合区域。我们使用Pepscan系统肽合成系统来确定α-银环蛇毒素结合所需的最小电鳐AChR片段,并研究该片段内每个残基的作用。α179-α203内连续重叠的十肽以及覆盖其他α亚基序列的几个十肽显示,α188-197和α189-198表现出最佳的125I-α-银环蛇毒素结合活性(KD分别为7.3×10-8和4.3×10-8M)。几个连续重叠的九肽、八肽、七肽、六肽和四肽显示,七肽α189-195是具有高结合活性的最小序列(KD = 5.6×10-8M)。d-筒箭毒碱可阻断毒素结合,而氨甲酰胆碱则不能。α188-197的26个类似物(大多数有1个残基被丙氨酸或甘氨酸取代)显示,Tyr189、Tyr190,尤其是Asp195对于125I-α-银环蛇毒素结合是必不可少的。Cys192和Cys193可被其他氨基酸取代,这证明α192-193之间的二硫键对于α-银环蛇毒素结合并非必需。等效的人肌肉AChRα188-197肽的α-银环蛇毒素结合能力降低是由于α189处的Tyr被Thr取代所致。

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