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脯氨酰4-羟化酶与合成肽底物的相互作用。胶原蛋白脯氨酸羟化的构象模型。

Interaction of prolyl 4-hydroxylase with synthetic peptide substrates. A conformational model for collagen proline hydroxylation.

作者信息

Atreya P L, Ananthanarayanan V S

机构信息

Department of Biochemistry, McMaster University, Hamilton, Ontario, Canada.

出版信息

J Biol Chem. 1991 Feb 15;266(5):2852-8.

PMID:1847136
Abstract

With the aim of understanding the structural basis for the substrate specificity of collagen prolyl 4-hydroxylase, we have studied the conformational features of synthetic oligopeptide substrates and their interaction with the enzyme purified from chicken embryo. Circular dichroism and infrared spectral data, taken in conjunction with relevant crystal structure data, indicated an equilibrium mixture of the polyproline-II (PP-II) helix, the beta-turn, and the random coil conformations in aqueous and trifluoroethanol solutions of the "collagen-related" peptides: t-Boc-Pro-Pro-Gly-Pro-OH, t-Boc-Pro-Pro-Gly-Pro-NHCH3, t-Pro-Pro-Gly-Pro-Pro-OH, t-Boc-Pro-Pro-Ala-Pro-OH, and t-Boc-Pro-Pro-Gln-Pro-OCH3, where t-Boc is tert-butoxycarbonyl. In another set of peptides related to elastin, t-Boc-Val-Pro-Gly-Val-OH and t-Boc-Gly-Val-Pro-Gly-Val-OH, the data indicated the beta-structure, rather than the PP-II helix, was in equilibrium with the beta-turn. Kinetic parameters for the enzymatic hydroxylation of the peptides showed that as a group, the first (proline-rich) set of peptides has higher Km values and lower Vmax and Kcat/Km values than the valine-rich peptides. Data on the inhibition of hydroxylation of the standard assay substrate (Pro-Pro-Gly)10 by the oligopeptides pointed to common binding sites for the peptides. Hydroxyproline-containing peptides had no effect on the hydroxylation of the standard substrate, showing the absence of product inhibition. Based on these and earlier data, we propose that in collagen and related peptides, a supersecondary structure consisting of the PP-II helix followed by the beta-turn is the minimal structural requirement for proline hydroxylation. The PP-II structure would aid effective interaction at the substrate binding subsites, while the beta-turn would be essential at the catalytic site of the enzyme. In elastin and related peptides, the beta-strand structure may be interchangeable with the PP-II structure. This conformational model for proline hydroxylation resolves the discrepancies in earlier proposals on the substrate specificity of prolyl 4-hydroxylase. It is also consistent with the available information on the active site geometry of the enzyme.

摘要

为了了解胶原蛋白脯氨酰4-羟化酶底物特异性的结构基础,我们研究了合成寡肽底物的构象特征及其与从鸡胚中纯化的该酶的相互作用。圆二色性和红外光谱数据,结合相关晶体结构数据,表明在“胶原相关”肽的水溶液和三氟乙醇溶液中,聚脯氨酸-II(PP-II)螺旋、β-转角和无规卷曲构象处于平衡混合状态,这些肽包括:叔丁氧羰基-脯氨酸-脯氨酸-甘氨酸-脯氨酸-羟基(t-Boc-Pro-Pro-Gly-Pro-OH)、叔丁氧羰基-脯氨酸-脯氨酸-甘氨酸-脯氨酸-甲胺(t-Boc-Pro-Pro-Gly-Pro-NHCH3)、脯氨酸-脯氨酸-甘氨酸-脯氨酸-脯氨酸-羟基(t-Pro-Pro-Gly-Pro-Pro-OH)、叔丁氧羰基-脯氨酸-脯氨酸-丙氨酸-脯氨酸-羟基(t-Boc-Pro-Pro-Ala-Pro-OH)和叔丁氧羰基-脯氨酸-脯氨酸-谷氨酰胺-脯氨酸-甲氧基(t-Boc-Pro-Pro-Gln-Pro-OCH3),其中t-Boc是叔丁氧羰基。在另一组与弹性蛋白相关的肽中,叔丁氧羰基-缬氨酸-脯氨酸-甘氨酸-缬氨酸-羟基(t-Boc-Val-Pro-Gly-Val-OH)和叔丁氧羰基-甘氨酸-缬氨酸-脯氨酸-甘氨酸-缬氨酸-羟基(t-Boc-Gly-Val-Pro-Gly-Val-OH),数据表明β-结构而非PP-II螺旋与β-转角处于平衡状态。肽的酶促羟化动力学参数表明,作为一个整体,第一组(富含脯氨酸)肽比富含缬氨酸的肽具有更高的Km值、更低的Vmax和Kcat/Km值。寡肽对标准测定底物(脯氨酸-脯氨酸-甘氨酸)10羟化的抑制数据表明这些肽存在共同的结合位点。含羟脯氨酸的肽对标准底物的羟化没有影响,表明不存在产物抑制。基于这些及早期数据,我们提出在胶原蛋白和相关肽中,由PP-II螺旋后接β-转角组成的超二级结构是脯氨酸羟化的最小结构要求。PP-II结构有助于在底物结合亚位点进行有效相互作用,而β-转角在酶的催化位点必不可少。在弹性蛋白和相关肽中,β-链结构可能与PP-II结构互换。这种脯氨酸羟化的构象模型解决了早期关于脯氨酰4-羟化酶底物特异性提议中的差异。它也与关于该酶活性位点几何结构的现有信息一致。

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