Post Michael R, Lester Henry A, Dougherty Dennis A
Division of Chemistry and Chemical Engineering and ‡Division of Biology and Biological Engineering, California Institute of Technology , Pasadena, California 91125, United States.
Biochemistry. 2017 Apr 4;56(13):1836-1840. doi: 10.1021/acs.biochem.7b00213. Epub 2017 Mar 21.
Designing subtype-selective agonists for neuronal nicotinic acetylcholine receptors is a challenging and significant goal aided by intricate knowledge of each subtype's binding patterns. We previously reported that in α6β2 receptors, acetylcholine makes a functional cation-π interaction with Trp149, but nicotine and TC299423 do not, suggesting a distinctive binding site. This work explores hydrogen binding at the backbone carbonyl associated with α6β2 Trp149. Substituting residue i + 1, Thr150, with its α-hydroxy analogue (Tah) attenuates the carbonyl's hydrogen bond accepting ability. At α6(T150Tah)β2, nicotine shows a 24-fold loss of function, TC299423 shows a modest loss, and acetylcholine shows no effect. Nicotine was further analyzed via a double-mutant cycle analysis utilizing N'-methylnicotinium, which indicated a hydrogen bond in α6β2 with a ΔΔG of 2.6 kcal/mol. Thus, even though nicotine does not make the conserved cation-π interaction with Trp149, it still makes a functional hydrogen bond to its associated backbone carbonyl.
设计神经元烟碱型乙酰胆碱受体的亚型选择性激动剂是一个具有挑战性且意义重大的目标,这需要对每个亚型的结合模式有深入的了解。我们之前报道过,在α6β2受体中,乙酰胆碱与Trp149形成功能性阳离子-π相互作用,但尼古丁和TC299423则不然,这表明存在一个独特的结合位点。这项工作探讨了与α6β2 Trp149相关的主链羰基处的氢键。将残基i + 1(即Thr150)替换为其α-羟基类似物(Tah)会减弱羰基的氢键接受能力。在α6(T150Tah)β2中,尼古丁的功能丧失了24倍,TC299423有适度丧失,而乙酰胆碱则无影响。利用N'-甲基烟碱通过双突变循环分析对尼古丁进行了进一步分析,结果表明α6β2中存在一个氢键,其ΔΔG为2.6千卡/摩尔。因此,尽管尼古丁不与Trp149形成保守的阳离子-π相互作用,但它仍与其相关的主链羰基形成功能性氢键。