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通过原子力显微镜对自组装纳米结构的表征来破译多价糖簇-凝集素相互作用。

Deciphering multivalent glycocluster-lectin interactions through AFM characterization of the self-assembled nanostructures.

机构信息

Université de Lyon, Ecole Centrale de Lyon, Institut des Nanotechnologies de Lyon INL UMR-5270 CNRS, 36 avenue Guy de Collongue, 69134 Ecully, France.

出版信息

Soft Matter. 2019 Sep 18;15(36):7211-7218. doi: 10.1039/c9sm00371a.

Abstract

Pseudomonas aeruginosa is a human opportunistic pathogen responsible for lung infections in cystic fibrosis patients. The emergence of resistant strains and its ability to form a biofilm seem to give a selective advantage to the bacterium and thus new therapeutic approaches are needed. To infect the lung, the bacterium uses several virulence factors, like LecA lectins. These proteins are involved in bacterial adhesion due to their specific interaction with carbohydrates of the host epithelial cells. The tetrameric LecA lectin specifically binds galactose residues. A new therapeutic approach is based on the development of highly affine synthetic glycoclusters able to selectively link with LecA to interfere with the natural carbohydrate-LecA interaction. In this study, we combined atomic force microscopy imaging and molecular dynamics simulations to visualize and understand the arrangements formed by LecA and five different glycoclusters. Our glycoclusters are small scaffolds characterized by a core and four branches, which terminate in a galactose residue. Depending on the nature of the core and the branches, the glycocluster-lectin interaction can be modulated and the affinity increased. We show that glycocluster-LecA arrangements highly depend on the glycocluster architecture: the core influences the rigidity of the geometry and the directionality of the branches, whereas the nature of the branch determines the compactness of the structure and the ease of binding.

摘要

铜绿假单胞菌是一种人体机会性病原体,可导致囊性纤维化患者肺部感染。耐药菌株的出现及其形成生物膜的能力似乎给细菌带来了选择性优势,因此需要新的治疗方法。为了感染肺部,细菌使用了几种毒力因子,如 LecA 凝集素。这些蛋白质由于与宿主上皮细胞的碳水化合物的特异性相互作用而参与细菌黏附。四聚体 LecA 凝集素特异性结合半乳糖残基。一种新的治疗方法是基于开发高亲和力的合成糖缀合物,这些缀合物能够与 LecA 选择性结合,从而干扰天然碳水化合物与 LecA 的相互作用。在这项研究中,我们结合原子力显微镜成像和分子动力学模拟来可视化和理解 LecA 和五种不同糖缀合物形成的排列。我们的糖缀合物是由核心和四个分支组成的小支架,其末端是一个半乳糖残基。根据核心和分支的性质,可以调节糖缀合物-凝集素相互作用并增加亲和力。我们表明,糖缀合物-LecA 排列高度依赖于糖缀合物的结构:核心影响几何形状的刚性和分支的方向性,而分支的性质决定了结构的紧凑性和结合的容易程度。

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