Hollow Octadecameric Self-Assembly of Collagen-like Peptides

化学 三螺旋 异三聚体G蛋白 胶原螺旋 自组装 折叠(DSP实现) 生物物理学 蛋白质亚单位 螺旋(腹足类) 立体化学 结晶学 生物化学 G蛋白 生物 生态学 受体 有机化学 蜗牛 基因 电气工程 工程类
作者
Le Tracy Yu,Maria C. Hancu,Mark A. Kreutzberger,Amy Henrickson,Borries Demeler,Edward H. Egelman,Jeffrey D. Hartgerink
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:145 (9): 5285-5296 被引量:6
标识
DOI:10.1021/jacs.2c12931
摘要

The folding of collagen is a hierarchical process that starts with three peptides associating into the characteristic triple helical fold. Depending on the specific collagen in question, these triple helices then assemble into bundles reminiscent of α-helical coiled-coils. Unlike α-helices, however, the bundling of collagen triple helices is very poorly understood with almost no direct experimental data available. In order to shed light on this critical step of collagen hierarchical assembly, we have examined the collagenous region of complement component 1q. Thirteen synthetic peptides were prepared to dissect the critical regions allowing for its octadecameric self-assembly. We find that short peptides (under 40 amino acids) are able to self-assemble into specific (ABC)6 octadecamers. This requires the ABC heterotrimeric composition as the self-assembly subunit, but does not require disulfide bonds. Self-assembly into this octadecamer is aided by short noncollagenous sequences at the N-terminus, although they are not entirely required. The mechanism of self-assembly appears to begin with the very slow formation of the ABC heterotrimeric helix, followed by rapid bundling of triple helices into progressively larger oligomers, terminating in the formation of the (ABC)6 octadecamer. Cryo-electron microscopy reveals the (ABC)6 assembly as a remarkable, hollow, crown-like structure with an open channel approximately 18 Å at the narrow end and 30 Å at the wide end. This work helps to illuminate the structure and assembly mechanism of a critical protein in the innate immune system and lays the groundwork for the de novo design of higher order collagen mimetic peptide assemblies.
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