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扩散模型辅助设计自组装胶原模拟肽作为生物相容性材料。

Diffusion model assisted designing self-assembling collagen mimetic peptides as biocompatible materials.

作者信息

Wang Xinglong, Xu Kangjie, Ma Lingling, Sun Ruoxi, Wang Kun, Wang Ruiyan, Zhang Junli, Tao Wenwen, Linghu Kai, Yu Shuyao, Zhou Jingwen

机构信息

Engineering Research Center of Ministry of Education on Food Synthetic Biotechnology and School of Biotechnology, Jiangnan University, 1800 Lihu Road, Wuxi, Jiangsu 214222, China.

Science Center for Future Foods, Jiangnan University, 1800 Lihu Road, Wuxi, Jiangsu 214222, China.

出版信息

Brief Bioinform. 2024 Nov 22;26(1). doi: 10.1093/bib/bbae622.

Abstract

Collagen self-assembly supports its mechanical function, but controlling collagen mimetic peptides (CMPs) to self-assemble into higher-order oligomers with numerous functions remains challenging due to the vast potential amino acid sequence space. Herein, we developed a diffusion model to learn features from different types of human collagens and generate CMPs; obtaining 66% of synthetic CMPs could self-assemble into triple helices. Triple-helical and untwisting states were probed by melting temperature (Tm); hence, we developed a model to predict collagen Tm, achieving a state-of-art Pearson's correlation (PC) of 0.95 by cross-validation and a PC of 0.8 for predicting Tm values of synthetic CMPs. Our chemically synthesized short CMPs and recombinantly expressed long CMPs could self-assemble, with the lowest requirement for hydrogel formation at a concentration of 0.08% (w/v). Five CMPs could promote osteoblast differentiation. Our results demonstrated the potential for using computer-aided methods to design functional self-assembling CMPs.

摘要

胶原蛋白的自组装支持其机械功能,但由于氨基酸序列空间潜力巨大,控制胶原蛋白模拟肽(CMPs)自组装成具有多种功能的高阶寡聚体仍然具有挑战性。在此,我们开发了一种扩散模型,以从不同类型的人类胶原蛋白中学习特征并生成CMPs;结果显示,66%的合成CMPs能够自组装成三螺旋结构。通过熔点(Tm)来探究三螺旋和解旋状态;因此,我们开发了一个预测胶原蛋白Tm的模型,通过交叉验证实现了0.95的最优皮尔逊相关系数(PC),并在预测合成CMPs的Tm值时达到了0.8的PC。我们化学合成的短CMPs和重组表达的长CMPs都能够自组装,形成水凝胶所需的最低浓度为0.08%(w/v)。五种CMPs能够促进成骨细胞分化。我们的结果证明了使用计算机辅助方法设计功能性自组装CMPs的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9dd/11650526/636a2b51d54b/bbae622ga1.jpg

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