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The structural basis for the human procollagen lysine hydroxylation and dual-glycosylation

Nature Communications. 2025-03; 
Junjiang Peng, Wenguo Li, Deqiang Yao, Ying Xia, Qian Wang, Yan Cai, Shaobai Li, Mi Cao, Yafeng Shen, Peixiang Ma, Rijing Liao, Jie Zhao, An Qin, Yu Cao Shanghai Jiao Tong University School of Medicin
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摘要

The proper assembly and maturation of collagens necessitate the orchestrated hydroxylation and glycosylation of multiple lysyl residues in procollagen chains. Dysfunctions in this multistep modification process can lead to severe collagen-associated diseases. To elucidate the coordination of lysyl processing activities, we determine the cryo-EM structures of the enzyme complex formed by LH3/PLOD3 and GLT25D1/ColGalT1, designated as the KOGG complex. Our structural analysis reveals a tetrameric complex comprising dimeric LH3/PLOD3s and GLT25D1/ColGalT1s, assembled with interactions involving the N-terminal loop of GLT25D1/ColGalT1 bridging another GLT25D1/ColGalT1 and LH3/PLOD3. We further elucidate the spatial ... More

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