Department of Chemistry, Division of Chemistry & Chemical Engineering, California Institute of Technology, Pasadena, California, United States of America.
PLoS One. 2021 Feb 25;16(2):e0246814. doi: 10.1371/journal.pone.0246814. eCollection 2021.
During formation of the Hedgehog (Hh) signaling proteins, cooperative activities of the Hedgehog INTein (Hint) fold and Sterol Recognition Region (SRR) couple autoproteolysis to cholesterol ligation. The cholesteroylated Hh morphogens play essential roles in embryogenesis, tissue regeneration, and tumorigenesis. Despite the centrality of cholesterol in Hh function, the full structure of the Hint-SRR ("Hog") domain that attaches cholesterol to the last residue of the active Hh morphogen remains enigmatic. In this work, we combine molecular dynamics simulations, photoaffinity crosslinking, and mutagenesis assays to model cholesterolysis intermediates in the human Sonic Hedgehog (hSHH) protein. Our results provide evidence for a hydrophobic Hint-SRR interface that forms a dynamic, non-covalent cholesterol-Hog complex. Using these models, we suggest a unified mechanism by which Hh proteins can recruit, sequester, and orient cholesterol, and offer a molecular basis for the effects of disease-causing hSHH mutations.
在 Hedgehog(Hh)信号蛋白形成过程中,Hedgehog INTein(Hint)折叠和甾醇识别区域(SRR)的协同活性将自噬与胆固醇连接偶联在一起。胆固醇化的 Hh 形态发生素在胚胎发生、组织再生和肿瘤发生中发挥着重要作用。尽管胆固醇在 Hh 功能中具有核心地位,但将胆固醇连接到活性 Hh 形态发生素的最后一个残基的完整 Hint-SRR(“Hog”)结构仍然是一个谜。在这项工作中,我们结合分子动力学模拟、光亲和交联和突变体分析来模拟人 Sonic Hedgehog(hSHH)蛋白中的胆固醇水解中间体。我们的结果为形成动态、非共价胆固醇-Hog 复合物的疏水 Hint-SRR 界面提供了证据。使用这些模型,我们提出了一个统一的机制,用于 Hh 蛋白募集、隔离和定向胆固醇,并为致病 hSHH 突变的影响提供了分子基础。