Bisello A, Sala S, Tonello A, Signor G, Melotto E, Mammi S, Peggion E
University of Padova, Department of Organic Chemistry, Italy.
Int J Biol Macromol. 1995 Oct;17(5):273-82. doi: 10.1016/0141-8130(95)98155-r.
Bombolitins are five structurally related heptadecapeptides which lyse erythrocytes and liposomes and enhance the activity of phospholipase A2. The conformational properties of the all-D-, retro-all-D, and retro-L-analogues of bombolitin III were investigated by circular dichroism (CD) and two-dimensional 1H-nuclear magnetic resonance (NMR) techniques. In water, all three sequences are in a random conformation and aggregate to various extents depending on pH and concentration. The two enantiomeric retro-sequences exhibit a higher propensity to form beta-aggregates, while the D-analogue of the native sequence tends to form aggregates of alpha-helices. In the presence of an excess of sodium dodecyl sulfate (SDS), the peptides fold into an amphiphilic alpha-helical conformation (left-handed in the case of the all-D sequences). NMR studies on the L-retro-analogue indicate that the helical segment is localized in the central part of the sequence. Combined CD and surface tension measurements indicate that the critical micellar concentration of SDS is raised in the presence of peptide and that helical folding occurs before micelle formation. These results are interpreted in terms of formation of peptide-detergent complexes. It is estimated that the helical structure forms when 40-50 molecules of detergent are bound to each peptide molecule. These data and our previous results in vitro biological tests confirm that the ability to form amphiphilic helices is the major determinant of biological activity of bombolitins.
蜂毒素是五种结构相关的十七肽,它们可使红细胞和脂质体溶解,并增强磷脂酶A2的活性。通过圆二色性(CD)和二维1H核磁共振(NMR)技术研究了蜂毒素III的全D-、反转全D-和反转L-类似物的构象性质。在水中,所有这三种序列均处于无规构象,并根据pH值和浓度在不同程度上聚集。两种对映体反转序列表现出更高的形成β-聚集体的倾向,而天然序列的D-类似物则倾向于形成α-螺旋聚集体。在过量十二烷基硫酸钠(SDS)存在下,这些肽折叠成两亲性α-螺旋构象(全D序列情况下为左手螺旋)。对L-反转类似物的NMR研究表明,螺旋段位于序列的中部。CD和表面张力测量相结合表明,在肽存在下SDS的临界胶束浓度升高,并且在胶束形成之前发生螺旋折叠。这些结果根据肽-去污剂复合物的形成来解释。据估计,当每个肽分子结合40-50个去污剂分子时形成螺旋结构。这些数据以及我们之前体外生物学测试的结果证实,形成两亲性螺旋的能力是蜂毒素生物活性的主要决定因素。