Mulloy B, Crane D T, Drake A F, Davies D B
National Institute for Biological Standards and Control, South Mimms, Potters Bar, Hertfordshire, UK.
Braz J Med Biol Res. 1996 Jun;29(6):721-9.
The sulfated polysaccharide heparin interacts with both poly-L- and poly-D-lysine, promoting the alpha-helix conformation in the polypeptide. Chemically modified heparins in which one of the three sulfate groups per disaccharide has been removed form the same type of complex with poly-L-lysine; when two of the three sulfate groups are removed this property is lost. Heparin oligosaccharides as small as the octasaccharide can still promote alpha-helix in poly-L-lysine; the hexa- and tetrasaccharides do not, but they do disturb to a lesser extent the dynamic conformation equilibrium associated with poly-L-lysine at pH7 (22 degrees C). A three-dimensional structure for the heparin/polylysine complex is proposed in which the helical heparin molecule and the alpha-helical polypeptide are side-by-side, not intertwining. The regular periodicity of sulfate group clusters along one side of the polysaccharide chain matches the periodicity of the polypeptide alpha-helix, allowing electrostatic interactions every three peptide turns between a heparin sulfate cluster and a zeta-amino group of the polylysine. The heparin octasaccharide is the smallest even-numbered oligosaccharide long enough for two such interactions to take place.
硫酸化多糖肝素可与聚-L-赖氨酸和聚-D-赖氨酸相互作用,促使多肽形成α-螺旋构象。在化学修饰的肝素中,每个二糖的三个硫酸基团中的一个被去除后,仍能与聚-L-赖氨酸形成相同类型的复合物;当三个硫酸基团中的两个被去除时,这种特性就会丧失。小至八糖的肝素寡糖仍能促使聚-L-赖氨酸形成α-螺旋;六糖和四糖则不能,但它们在较小程度上会干扰pH7(22℃)时与聚-L-赖氨酸相关的动态构象平衡。本文提出了肝素/聚赖氨酸复合物的三维结构,其中螺旋状的肝素分子和α-螺旋多肽并排排列,而非相互缠绕。沿着多糖链一侧的硫酸基团簇的规则周期性与多肽α-螺旋的周期性相匹配,使得硫酸肝素簇与聚赖氨酸的ζ-氨基之间每三个肽段就会发生一次静电相互作用。肝素八糖是长度足以发生两次这种相互作用的最小偶数寡糖。