Moretto A, Peggion C, Formaggio F, Crisma M, Toniolo C, Piazza C, Kaptein B, Broxterman Q B, Ruiz I, Díaz-de-Villegas M D, Galvez J A, Cativiela C
Biopolymer Research Center, CNR, Department of Organic Chemistry, University of Padova, Italy.
J Pept Res. 2000 Nov;56(5):283-97. doi: 10.1034/j.1399-3011.2000.00768.x.
Using different stereoselective chemical and chemoenzymatic approaches we synthesized the chiral, Calpha-methylated alpha-amino acid L-(alphaMe)Nva with a short, linear side-chain. A set of terminally protected model peptides to the pentamer level containing either (alphaMe)Nva or Nva in combination with Ala and/or Aib was prepared using solution methods and characterized fully. Two (alphaMe)Nva peptides were also synthesized using side-chain hydrogenation of the corresponding Calpha-methyl, Calpha-allylglycine (Mag) peptides. A detailed solution and crystal-state conformational analysis based on FT-IR absorption, 1H NMR and X-ray diffraction techniques allowed us to define that: (i) (alphaMe)Nva is an effective beta-turn and 3(10)-helix former; and (ii) the relationship between (alphaMe)Nva chirality and the screw sense of the turn/helix formed is that typical of protein amino acids, i.e. L-(alphaMe)Nva induces the preferential formation of right-handed folded structures. In more general terms, this study reinforced previous conclusions that peptides based on alpha-amino acids with a Calpha-methyl substituent and a Calpha-linear alkyl substituent are characterized by a strong tendency to fold into turn and helical structures.
我们采用不同的立体选择性化学和化学酶法合成了具有短直链侧链的手性α-甲基化α-氨基酸L-(αMe)Nva。使用溶液法制备了一组末端保护的模型肽,其包含(αMe)Nva或Nva,并与Ala和/或Aib组合,直至五聚体水平,并进行了全面表征。还通过相应的α-甲基化、α-烯丙基甘氨酸(Mag)肽的侧链氢化反应合成了两种(αMe)Nva肽。基于傅里叶变换红外吸收、1H核磁共振和X射线衍射技术的详细溶液和晶体状态构象分析使我们能够确定:(i)(αMe)Nva是一种有效的β-转角和3(10)-螺旋形成剂;(ii)(αMe)Nva的手性与所形成的转角/螺旋的螺旋方向之间的关系是蛋白质氨基酸的典型关系,即L-(αMe)Nva诱导优先形成右手折叠结构。更一般地说,这项研究强化了先前的结论,即基于具有α-甲基取代基和α-直链烷基取代基的α-氨基酸的肽具有强烈折叠成转角和螺旋结构的倾向。