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结构解析揭示补体激活识别分子甘露聚糖结合凝集素中存在弯曲的胶原三螺旋。

A solution structure analysis reveals a bent collagen triple helix in the complement activation recognition molecule mannan-binding lectin.

机构信息

Department of Structural and Molecular Biology, University College London, London, United Kingdom.

Center for Biotechnology and Interdisciplinary Studies, Rensselaer Polytechnic Institute, Troy, New York, USA.

出版信息

J Biol Chem. 2023 Feb;299(2):102799. doi: 10.1016/j.jbc.2022.102799. Epub 2022 Dec 15.

Abstract

Collagen triple helices are critical in the function of mannan-binding lectin (MBL), an oligomeric recognition molecule in complement activation. The MBL collagen regions form complexes with the serine proteases MASP-1 and MASP-2 in order to activate complement, and mutations lead to common immunodeficiencies. To evaluate their structure-function properties, we studied the solution structures of four MBL-like collagen peptides. The thermal stability of the MBL collagen region was much reduced by the presence of a GQG interruption in the typical (X-Y-Gly)n repeat compared to controls. Experimental solution structural data were collected using analytical ultracentrifugation and small angle X-ray and neutron scattering. As controls, we included two standard Pro-Hyp-Gly collagen peptides (POG), as well as three more peptides with diverse (X-Y-Gly)n sequences that represented other collagen features. These data were quantitatively compared with atomistic linear collagen models derived from crystal structures and 12,000 conformations obtained from molecular dynamics simulations. All four MBL peptides were bent to varying degrees up to 85 in the best-fit molecular dynamics models. The best-fit benchmark peptides (POG) were more linear but exhibited a degree of conformational flexibility. The remaining three peptides showed mostly linear solution structures. In conclusion, the collagen helix is not strictly linear, the degree of flexibility in the triple helix depends on its sequence, and the triple helix with the GQG interruption showed a pronounced bend. The bend in MBL GQG peptides resembles the bend in the collagen of complement C1q and may be key for lectin pathway activation.

摘要

胶原三螺旋对于甘露聚糖结合凝集素(MBL)的功能至关重要,MBL 是补体激活中的寡聚识别分子。MBL 胶原区域与丝氨酸蛋白酶 MASP-1 和 MASP-2 形成复合物以激活补体,而突变会导致常见的免疫缺陷。为了评估它们的结构-功能特性,我们研究了四个 MBL 样胶原肽的溶液结构。与对照相比,典型的(X-Y-Gly)n 重复中存在 GQG 中断会大大降低 MBL 胶原区域的热稳定性。使用分析超速离心和小角度 X 射线和中子散射收集实验溶液结构数据。作为对照,我们包括两个标准的 Pro-Hyp-Gly 胶原肽(POG),以及三个具有不同(X-Y-Gly)n 序列的肽,这些序列代表了其他胶原特征。这些数据与源自晶体结构的原子线性胶原模型和从分子动力学模拟中获得的 12,000 个构象进行了定量比较。在最佳拟合的分子动力学模型中,所有四个 MBL 肽都在不同程度上弯曲至 85°。最佳拟合的基准肽(POG)更线性,但表现出一定程度的构象灵活性。其余三个肽显示出主要的线性溶液结构。总之,胶原螺旋并非严格线性,三螺旋的柔韧性取决于其序列,并且具有 GQG 中断的三螺旋显示出明显的弯曲。MBL GQG 肽的弯曲类似于补体 C1q 胶原的弯曲,可能是凝集素途径激活的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d642/9898670/eee0ebc1e216/gr1.jpg

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