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B结构域内的抑制性序列可使循环中的凝血因子V处于无活性状态。

Inhibitory sequences within the B-domain stabilize circulating factor V in an inactive state.

作者信息

Zhu Hua, Toso Raffaella, Camire Rodney M

机构信息

Department of Pediatrics, Division of Hematology, The Children's Hospital of Philadelphia, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Biol Chem. 2007 May 18;282(20):15033-9. doi: 10.1074/jbc.M701315200. Epub 2007 Mar 26.

Abstract

Blood coagulation factor V circulates as a procofactor with little or no procoagulant activity. It is activated to factor Va by thrombin following proteolytic removal of a large central B-domain. Although this reaction is well studied, the mechanism by which bond cleavage and B-domain release facilitate the transition to the active cofactor state has not been defined. Here we show that deletion or substitution of specific B-domain sequences drives the expression of procoagulant function without the need for proteolytic processing. Conversion to the constitutively active cofactor state is related, at least in part, to a cluster of amino acids that is highly basic and well conserved across the vertebrate lineage. Our findings demonstrate that discrete sequences in the B-domain serve to stabilize the inactive procofactor state, with proteolysis primarily functioning to remove these inhibitory constraints. These unexpected results provide new insight into the mechanism of factor V activation.

摘要

血液凝固因子V以一种几乎没有或完全没有促凝活性的前辅因子形式在血液中循环。在经过蛋白水解去除一个大的中央B结构域后,它被凝血酶激活为因子Va。尽管对该反应已进行了充分研究,但尚未明确键断裂和B结构域释放促进向活性辅因子状态转变的机制。在此,我们表明特定B结构域序列的缺失或替换可驱动促凝功能的表达,而无需蛋白水解加工。转变为组成型活性辅因子状态至少部分与一组高度碱性且在脊椎动物谱系中高度保守的氨基酸有关。我们的研究结果表明,B结构域中的离散序列起到稳定无活性前辅因子状态的作用,而蛋白水解主要起到去除这些抑制性限制的作用。这些意外的结果为因子V激活机制提供了新的见解。

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