Deacon M P, McGurk S, Roberts C J, Williams P M, Tendler S J, Davies M C, Davis S S, Harding S E
University of Nottingham, NCMH Physical Biochemistry Laboratory, School of Biosciences, Sutton Bonington LE12 5RD, UK.
Biochem J. 2000 Jun 15;348 Pt 3(Pt 3):557-63.
Atomic force microscopy has been utilized to probe, at a molecular level, the interaction between purified pig gastric mucin (PGM) and a mucoadhesive cationic polymer, chitosan (sea cure 210+), with a low degree (approx. 11%) of acetylation. Images were produced detailing the structures of both PGM and chitosan in 0.1 M acetate buffer (pH 4.5), followed by the complex of the two structures in the same buffer. PGM in 0.1 M acetate buffer revealed long linear filamentous structures, consistent with earlier electron microscopy and scanning tunnelling micoscopy studies. The chitosan molecules also adopted a linear conformation in the same buffer, although with a smaller average length and diameter. They appeared to adopt a stiff-coil conformation consistent with earlier hydrodynamic measurements. The complexes formed after mixing PGM and chitosan together revealed large aggregates. In 0.1 M ionic strength buffer they were of the order of 0.7 microm in diameter, consistent with previous electron microscopy studies. The effect of ionic strength of the buffer on the structure of the complex was also studied and, together with molecular hydrodynamic data, demonstrates that the interaction is principally electrostatic in nature.
原子力显微镜已被用于在分子水平上探测纯化的猪胃粘蛋白(PGM)与一种乙酰化程度较低(约11%)的粘膜粘附阳离子聚合物壳聚糖(海疗210+)之间的相互作用。生成了详细描述PGM和壳聚糖在0.1 M醋酸盐缓冲液(pH 4.5)中的结构的图像,随后是这两种结构在同一缓冲液中的复合物的图像。0.1 M醋酸盐缓冲液中的PGM呈现出长的线性丝状结构,这与早期的电子显微镜和扫描隧道显微镜研究一致。壳聚糖分子在同一缓冲液中也呈现出线性构象,尽管平均长度和直径较小。它们似乎呈现出与早期流体动力学测量一致的硬螺旋构象。将PGM和壳聚糖混合在一起后形成的复合物显示出大的聚集体。在0.1 M离子强度缓冲液中,它们的直径约为0.7微米,这与先前的电子显微镜研究一致。还研究了缓冲液离子强度对复合物结构的影响,并且与分子流体动力学数据一起表明,这种相互作用本质上主要是静电作用。