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使用显微镜技术可视化聚-L-赖氨酸与聚(丙烯酸)微凝胶之间的相互作用:静电作用和肽大小的影响。

Visualizing the interaction between poly-L-lysine and poly(acrylic acid) microgels using microscopy techniques: effect of electrostatics and peptide size.

作者信息

Bysell Helena, Malmsten Martin

机构信息

Department of Pharmacy, Uppsala University, P.O. Box 580, SE-751 23 Uppsala, Sweden.

出版信息

Langmuir. 2006 Jun 6;22(12):5476-84. doi: 10.1021/la060452a.

Abstract

The interaction between lightly cross-linked poly(acrylic acid) (pAA) microgels (50-150 microm in diameter) and poly-L-lysine (pLys) was studied as a function of pH, ionic strength, peptide size, and concentration. The swelling response and distribution of polypeptides within microgel particles was monitored by micromanipulator-assisted light microscopy and confocal laser scanning microscopy, while binding isotherms of pLys in the microgels were determined spectrophotometrically. Conformational changes of pLys were investigated by circular dichroism. The molecular weight of pLys was found to influence the degree of peptide-induced microgel deswelling, largely due to limitation of peptides larger than the effective network mesh size to penetrate the entire gel. Large peptides were concentrated within a surface layer of the gel particles, and at low ionic strength this dense surface layer was shown to act as a largely steric barrier for further penetration of compounds into the gel core. Small peptides, however, distributed evenly throughout the microgel particles and were able to create large microgel volume reductions. The deswelling of microgels increased with decreasing pH, while the uptake of pLys was significantly reduced at low pH. The effect of ionic strength on the interactions of pLys and oppositely charged pAA microgels was moderate and only pronounced for deswelling of gels at high pH. A significant increase in the alpha-helix content of pLys interacting with the oppositely charged microgels was observed for high molecular weight peptides, and the extent of alpha-helix formation was as expected more pronounced at high pH, i.e., at high charge density of the microgels but reduced charge density of the peptides.

摘要

研究了轻度交联的聚丙烯酸(pAA)微凝胶(直径50 - 150微米)与聚-L-赖氨酸(pLys)之间的相互作用,该相互作用是pH、离子强度、肽大小和浓度的函数。通过微操纵器辅助光学显微镜和共聚焦激光扫描显微镜监测微凝胶颗粒内多肽的溶胀响应和分布,同时用分光光度法测定微凝胶中pLys的结合等温线。通过圆二色性研究pLys的构象变化。发现pLys的分子量会影响肽诱导的微凝胶去溶胀程度,这主要是由于大于有效网络网孔尺寸的肽难以穿透整个凝胶。大肽集中在凝胶颗粒的表面层,在低离子强度下,这个致密的表面层被证明对化合物进一步渗透到凝胶核心起到了很大的空间位阻作用。然而,小肽均匀分布在整个微凝胶颗粒中,并能够使微凝胶体积大幅减小。微凝胶的去溶胀随着pH的降低而增加,而在低pH下pLys的摄取显著减少。离子强度对pLys与带相反电荷的pAA微凝胶相互作用的影响适中,仅在高pH下凝胶去溶胀时才明显。对于高分子量肽,观察到与带相反电荷的微凝胶相互作用的pLys的α-螺旋含量显著增加,并且α-螺旋形成的程度在高pH下(即微凝胶电荷密度高但肽电荷密度低时)如预期更为明显。

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