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胶原蛋白脯氨酰 4-羟化酶 I 和 II 的肽底物结合结构域对富含脯氨酸和羟脯氨酸的肽的结合差异

Binding Differences of the Peptide-Substrate-Binding Domain of Collagen Prolyl 4-Hydroxylases I and II for Proline- and Hydroxyproline-Rich Peptides.

作者信息

Rahman M Mubinur, Sulu Ramita, Adediran Bukunmi, Tu Hongmin, Salo Antti M, Murthy Sudarshan, Myllyharju Johanna, Wierenga Rik K, Koski M Kristian

机构信息

Faculty of Biochemistry and Molecular Medicine, University of Oulu, Oulu, Finland.

Biocenter Oulu, University of Oulu, Oulu, Finland.

出版信息

Proteins. 2025 Oct;93(10):1732-1746. doi: 10.1002/prot.26839. Epub 2025 May 19.

Abstract

Collagen prolyl 4-hydroxylase (C-P4H) catalyzes the 4-hydroxylation of Y-prolines of the XYG-repeat of procollagen. C-P4Hs are tetrameric αβ enzymes. The α-subunit provides the N-terminal dimerization domain, the middle peptide-substrate-binding (PSB) domain, and the C-terminal catalytic (CAT) domain. There are three isoforms of the α-subunit, complexed with a β-subunit that is protein disulfide isomerase, forming C-P4H I-III. The PSB domain of the α-subunit binds proline-rich peptides, but its function with respect to the prolyl hydroxylation mechanism is unknown. An extended mode of binding of proline-rich peptides (PPII, polyproline type-II, conformation) to the PSB-I domain has previously been reported for the PPG-PPG-PPG and P9 peptides. Crystal structures now show that peptides with the motif PxGP (PPG-PRG-PPG, PPG-PAG-PPG) (where x, at Y-position 5, is not a proline) bind to the PSB-I domain differently, more deeply, in the peptide-binding groove. The latter mode of binding has previously been reported for structures of the PSB-II domain complexed with these PxGP-peptides. In addition, it is shown here by crystallographic binding studies that the POG-PAG-POG peptide (with 4-hydroxyprolines at Y-positions 2 and 8) also adopts the PxGP mode of binding to PSB-I as well as to PSB-II. Calorimetric binding studies show that the affinities of these peptides are lower for PSB-I than for PSB-II, with, respectively, K values of about 70 μM for PSB-I and 20 μM for PSB-II. The importance of these results for understanding the reaction mechanism of C-P4H, in particular concerning the function of the PSB domain, is discussed.

摘要

胶原蛋白脯氨酰4-羟化酶(C-P4H)催化前胶原XYG重复序列中Y-脯氨酸的4-羟化反应。C-P4H是一种四聚体αβ酶。α亚基提供N端二聚化结构域、中间的肽底物结合(PSB)结构域和C端催化(CAT)结构域。α亚基有三种同工型,与作为蛋白质二硫键异构酶的β亚基结合,形成C-P4H I-III。α亚基的PSB结构域结合富含脯氨酸的肽,但其在脯氨酰羟化机制方面的功能尚不清楚。此前已报道了富含脯氨酸的肽(PPII,聚脯氨酸II型构象)与PSB-I结构域的扩展结合模式,涉及PPG-PPG-PPG和P9肽。现在的晶体结构表明,具有PxGP基序的肽(PPG-PRG-PPG、PPG-PAG-PPG)(其中Y位置5处的x不是脯氨酸)以不同的方式、更深地结合到PSB-I结构域的肽结合槽中。此前报道过PSB-II结构域与这些PxGP肽形成的复合物的结构也是这种结合模式。此外,通过晶体学结合研究表明,POG-PAG-POG肽(Y位置2和8处有4-羟脯氨酸)也采用PxGP结合模式与PSB-I以及PSB-II结合。量热法结合研究表明,这些肽对PSB-I的亲和力低于对PSB-II的亲和力,PSB-I的K值约为70μM,PSB-II的K值约为20μM。本文讨论了这些结果对于理解C-P4H反应机制,特别是关于PSB结构域功能的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86cf/12433258/de2d47b57411/PROT-93-1732-g007.jpg

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