Popov E M, Lipkind G M
Mol Biol (Mosk). 1979 Mar-Apr;13(2):363-76.
Theoretical conformational analysis of the antibiotic gramicidin A HCO--L-Val--Gly--L-Ala--D-leu--L-Ala--D-Val--L-Val--D-Val--(L-Trp--D-Leu)3--L-Trp--NHCH2CH2OH has been carried out by stagewise computations of a serie of LD penta-decapeptide analogs, which approximated the structure of the natural compound at the final stage. The potential surface of the LD-peptide skeleton of the gramicidin molecule is shown to predetermine the existence of a set of pi4LD--Pi6LD structures. Low-energy helical structures with no hydrogen bonds have also been revealed, which are due to compensational relations between hydrogen bonding and nonbonded energies. Inclusion of D-Val into the amino acid sequence discriminate against alpha-helix, while Trp and Leu residues contribute to a formation of pi4LD and pi6LD helices and to a reduction of energy differences between them. Conformational properties and geometrical parameters of the lowest-energy helical structures of gramicidin provide transport of protones and of all alkali metal ions. A mechanism of cation transportation through the gramicidin trans-membrane channel is discussed.
通过对一系列LD十五肽类似物进行逐步计算,对抗生素短杆菌肽A HCO--L-缬氨酸--甘氨酸--L-丙氨酸--D-亮氨酸--L-丙氨酸--D-缬氨酸--L-缬氨酸--D-缬氨酸--(L-色氨酸--D-亮氨酸)3--L-色氨酸--NHCH2CH2OH进行了理论构象分析,这些类似物在最后阶段近似于天然化合物的结构。结果表明,短杆菌肽分子的LD-肽骨架的势能面决定了一组pi4LD--Pi6LD结构的存在。还发现了没有氢键的低能量螺旋结构,这是由于氢键和非键能之间的补偿关系所致。将D-缬氨酸纳入氨基酸序列会阻碍α-螺旋的形成,而色氨酸和亮氨酸残基有助于形成pi4LD和pi6LD螺旋,并减小它们之间的能量差异。短杆菌肽最低能量螺旋结构的构象性质和几何参数为质子和所有碱金属离子的转运提供了条件。本文讨论了阳离子通过短杆菌肽跨膜通道的转运机制。