Department of Chemistry, Wayne State University, Detroit, Michigan 48202, USA.
J Am Chem Soc. 2012 Feb 1;134(4):2313-24. doi: 10.1021/ja2102345. Epub 2012 Jan 24.
Absolute 18-crown-6 (18C6) affinities of nine protonated peptidomimetic bases are determined using guided ion beam tandem mass spectrometry techniques. The bases (B) included in this work are mimics for the n-terminal amino group and the side chains of the basic amino acids, i.e., the favorable sites for binding of 18C6 to peptides and proteins. Isopropylamine is chosen as a mimic for the n-terminal amino group, imidazole and 4-methylimidazole are chosen as mimics for the side chain of histidine (His), 1-methylguanidine is chosen as a mimic for the side chain of arginine (Arg), and several primary amines including methylamine, ethylamine, n-propylamine, n-butylamine, and 1,5-diamino pentane as mimics for the side chain of lysine (Lys). Theoretical electronic structure calculations are performed to determine stable geometries and energetics for neutral and protonated 18C6 and the peptidomimetic bases, as well as the proton bound complexes comprised of these species, (B)H(+)(18C6). The measured 18C6 binding affinities of the Lys side chain mimics are larger than the measured binding affinities of the mimics for Arg and His. These results suggest that the Lys side chains should be the preferred binding sites for 18C6 complexation to peptides and proteins. Present results also suggest that competition between Arg or His and Lys for 18C6 is not significant. The mimic for the n-terminal amino group exhibits a measured binding affinity for 18C6 that is similar to or greater than that of the Lys side chain mimics. However, theory suggests that binding to n-terminal amino group mimic is weaker than that to all of the Lys mimics. These results suggest that the n-terminal amino group may compete with the Lys side chains for 18C6 complexation.
使用引导离子束串联质谱技术测定了九种质子化肽模拟碱基与绝对 18-冠-6(18C6)的亲和力。本工作中包含的碱基(B)模拟了肽和蛋白质中与 18C6 结合的有利部位,即 N-末端氨基和碱性氨基酸的侧链。异丙胺被选为 N-末端氨基的模拟物,咪唑和 4-甲基咪唑被选为组氨酸(His)侧链的模拟物,1-甲基胍被选为精氨酸(Arg)侧链的模拟物,以及几种伯胺,包括甲胺、乙胺、正丙胺、正丁胺和 1,5-二氨基戊烷,作为赖氨酸(Lys)侧链的模拟物。进行理论电子结构计算以确定中性和质子化 18C6 以及肽模拟碱基的稳定几何形状和能量,以及由这些物种组成的质子结合复合物(BH+(18C6)。测定的 Lys 侧链模拟物的 18C6 结合亲和力大于测定的 Arg 和 His 模拟物的结合亲和力。这些结果表明 Lys 侧链应该是 18C6 与肽和蛋白质结合的首选结合位点。目前的结果还表明,Arg 或 His 与 Lys 之间的竞争对于 18C6 并不重要。N-末端氨基模拟物对 18C6 的实测结合亲和力与 Lys 侧链模拟物的实测结合亲和力相似或更大。然而,理论表明,与 N-末端氨基模拟物的结合比与所有 Lys 模拟物的结合都弱。这些结果表明,N-末端氨基可能与 Lys 侧链竞争 18C6 结合。