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Structural enzymology binding studies of the peptide‐substrate‐binding domain of human collagen prolyl 4‐hydroxylase (type‐II): High affinity peptides have a PxGP sequence motif

机译:人胶原蛋白脯氨酸4-羟化酶(II型)的肽 - 底物结合结构域的结构酶结合研究:高亲和力肽具有PXGP序列基序

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Abstract The peptide‐substrate‐binding (PSB) domain of collagen prolyl 4‐hydroxylase (C‐P4H, an α 2 β 2 tetramer) binds proline‐rich procollagen peptides. This helical domain (the middle domain of the α subunit) has an important role concerning the substrate binding properties of C‐P4H, although it is not known how the PSB domain influences the hydroxylation properties of the catalytic domain (the C‐terminal domain of the α subunit). The crystal structures of the PSB domain of the human C‐P4H isoform II (PSB‐II) complexed with and without various short proline‐rich peptides are described. The comparison with the previously determined PSB‐I peptide complex structures shows that the C‐P4H‐I substrate peptide (PPG) 3 , has at most very weak affinity for PSB‐II, although it binds with high affinity to PSB‐I. The replacement of the middle PPG triplet of (PPG) 3 to the nonhydroxylatable PAG, PRG, or PEG triplet, increases greatly the affinity of PSB‐II for these peptides, leading to a deeper mode of binding, as compared to the previously determined PSB‐I peptide complexes. In these PSB‐II complexes, the two peptidyl prolines of its central P(A/R/E)GP region bind in the Pro5 and Pro8 binding pockets of the PSB peptide‐binding groove, and direct hydrogen bonds are formed between the peptide and the side chains of the highly conserved residues Tyr158, Arg223, and Asn227, replacing water mediated interactions in the corresponding PSB‐I complex. These results suggest that PxGP (where x is not a proline) is the common motif of proline‐rich peptide sequences that bind with high affinity to PSB‐II.
机译:摘要胶粘剂族脯氨酰的肽 - 基质结合(PSB)结构域(C-P4H,α2β2四聚体)结合了富含富含脯氨酸的平胶粘肽。该螺旋结构域(α亚基的中间结构域)具有关于C-P4H的基材结合性质的重要作用,尽管本文不知道PSB结构域如何影响催化结构域的羟基化性质(C-末端域α亚基)。描述了用富含短脯氨酸富含肽络合的人C-P4H同种型II(PSB-II)的PSB结构域的晶体结构。与先前确定的PSB-1肽复合结构的比较表明,C-P4H-I底物肽(PPG)3对PSB-II具有最非常弱的亲和力,但它与对PSB-1的高亲和力结合。替代(PPG)3的中间PPG三重蛋白(PPG)3至非羟基族PAG,PRG或PEG三联体,大大增加了PSB-II对这些肽的亲和力,导致更深的结合模式,与先前确定的PSB相比 - 肽复合物。在这些PSB-II复合物中,其中央P(A / R / e)GP区域的两个肽脯氨酸在PSB肽结合槽的PRO5和PRO8结合袋中结合,并且在肽之间形成直接氢键和高度保守的残留物TYR158,ARG223和ASN227的侧链,替代相应的PSB-I复合物中的水介导的相互作用。这些结果表明PXGP(其中X不是脯氨酸)是富含富含脯氨酸肽序列的常见基序,其与PSB-II的高亲和力结合。

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