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凝血因子IX的前肽和γ-谷氨酸结构域在维生素K依赖性羧化酶体外羧化作用中的作用。

Role of the propeptide and gamma-glutamic acid domain of factor IX for in vitro carboxylation by the vitamin K-dependent carboxylase.

作者信息

Stanley T B, Wu S M, Houben R J, Mutucumarana V P, Stafford D W

机构信息

Department of Biology, Center for Thrombosis and Hemostasis, University of North Carolina at Chapel Hill 27599-3280, USA.

出版信息

Biochemistry. 1998 Sep 22;37(38):13262-8. doi: 10.1021/bi981031y.

Abstract

The vitamin K-dependent gamma-glutamyl carboxylase catalyzes the processive carboxylation of specific glutamates in a number of proteins related to blood coagulation and bone. To address the independent importance of the propeptide, gamma-carboxyglutamic acid (Gla) domain and elements beyond the Gla domain of factor IX in vitamin K-dependent carboxylation, we have examined the kinetics of carboxylation of peptides containing (1) propeptide and Gla domain, (2) the Gla domain alone, (3) uncarboxylated bone Gla protein, (4) propeptide followed by the entire uncarboxylated factor IX molecule, and (5) the factor IX propeptide followed by a non-Gla domain sequence. Our studies indicate that peptides with a covalently linked propeptide have Km values similar to the physiological substrate of the carboxylase. In contrast, the Gla domain of factor IX has a >/=230-fold higher Km for the carboxylase than the corresponding peptide with a covalently linked propeptide. This contrasts with bone Gla protein, another vitamin K-dependent protein, which appears not to require a covalently linked propeptide for high-affinity binding to the carboxylase. Analysis of the carboxylation products of a propeptide/non-Gla domain substrate indicate that it is carboxylated multiple times in a processive manner. These studies show that the perceived binding affinity of the carboxylase substrate and processivity is conferred by the propeptide without requiring the conserved Gla domain sequences and that factor IX and bone Gla protein may have distinct mechanisms of interacting with the carboxylase.

摘要

维生素K依赖的γ-谷氨酰羧化酶催化多种与血液凝固和骨骼相关的蛋白质中特定谷氨酸的连续羧化反应。为了研究凝血因子IX的前肽、γ-羧基谷氨酸(Gla)结构域以及Gla结构域以外的元件在维生素K依赖的羧化反应中的独立重要性,我们检测了包含以下成分的肽段的羧化动力学:(1)前肽和Gla结构域;(2)单独的Gla结构域;(3)未羧化的骨钙素;(4)前肽后接整个未羧化的凝血因子IX分子;(5)凝血因子IX前肽后接非Gla结构域序列。我们的研究表明,具有共价连接前肽的肽段的Km值与羧化酶的生理底物相似。相比之下,凝血因子IX的Gla结构域对羧化酶的Km值比具有共价连接前肽的相应肽段高≥230倍。这与另一种维生素K依赖蛋白骨钙素形成对比,骨钙素似乎不需要共价连接的前肽就能与羧化酶进行高亲和力结合。对前肽/非Gla结构域底物的羧化产物分析表明,它以连续方式被多次羧化。这些研究表明,羧化酶底物的结合亲和力和连续性是由前肽赋予的,而不需要保守的Gla结构域序列,并且凝血因子IX和骨钙素与羧化酶相互作用的机制可能不同。

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