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通过抗体定位法确定α-蝎毒素的受体位点:对钠通道拓扑结构的影响

Localization of the receptor site for alpha-scorpion toxins by antibody mapping: implications for sodium channel topology.

作者信息

Thomsen W J, Catterall W A

机构信息

Department of Pharmacology, School of Medicine, University of Washington, Seattle 98195.

出版信息

Proc Natl Acad Sci U S A. 1989 Dec;86(24):10161-5. doi: 10.1073/pnas.86.24.10161.

Abstract

Site-directed and monoclonal antibodies recognizing different extracellular regions of the RII sodium channel alpha subunit have been used to determine the sequences that comprise the receptor for alpha-scorpion toxins by evaluating the effect of antibody on voltage-dependent binding of radio-labeled toxin isolated from Leiurus quinquestriatus to both reconstituted rat brain sodium channel and rat brain synaptosomes. Of six antibodies tested, two recognizing amino acid residues 355-371 and 382-400 located on an extracellular loop between transmembrane segments S5 and S6 of domain I and one recognizing residues 1686-1703 of a similar loop of domain IV inhibit binding by 30-55%. Inhibition is concentration-(EC50 = 0.4-2 microM) and time- (t1/2 = 40-80 min) dependent. Five different monoclonal antibodies recognizing the same extracellular loop in domain I inhibit binding completely with similar EC50 values as observed for site-directed antibodies. Kinetic studies of the antibody effect are consistent with a slowly reversible competition for the toxin receptor site. Our results suggest that the extracellular loops between segments S5 and S6 of domains I and IV comprise at least part of the alpha-scorpion toxin receptor site and support the membrane topology models in which domains I and IV are adjacent in the tertiary structure of the channel protein and six transmembrane sequences are contained in each of the four homologous domains.

摘要

通过评估抗体对从金环蝎(Leiurus quinquestriatus)分离的放射性标记毒素与重组大鼠脑钠通道和大鼠脑突触体的电压依赖性结合的影响,识别RII钠通道α亚基不同细胞外区域的定点抗体和单克隆抗体已被用于确定构成α-蝎毒素受体的序列。在所测试的六种抗体中,两种识别位于结构域I的跨膜片段S5和S6之间的细胞外环上的氨基酸残基355 - 371和382 - 400,一种识别结构域IV的类似环的残基1686 - 1703,它们抑制结合达30 - 55%。抑制作用是浓度依赖性的(EC50 = 0.4 - 2 microM)和时间依赖性的(t1/2 = 40 - 80分钟)。识别结构域I中相同细胞外环的五种不同单克隆抗体完全抑制结合,其EC50值与定点抗体观察到的相似。抗体作用的动力学研究与对毒素受体位点的缓慢可逆竞争一致。我们的结果表明,结构域I和IV的S5和S6片段之间的细胞外环至少构成了α-蝎毒素受体位点的一部分,并支持膜拓扑模型,即在通道蛋白的三级结构中结构域I和IV相邻,并且四个同源结构域中的每一个都包含六个跨膜序列。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b1c/298667/97c7ca7daf8f/pnas00291-0538-a.jpg

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