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人胎盘血纤维蛋白稳定因子(纤维蛋白连接酶、转谷氨酰胺酶)的一级结构

Primary structure of blood coagulation factor XIIIa (fibrinoligase, transglutaminase) from human placenta.

作者信息

Takahashi N, Takahashi Y, Putnam F W

出版信息

Proc Natl Acad Sci U S A. 1986 Nov;83(21):8019-23. doi: 10.1073/pnas.83.21.8019.

Abstract

We have determined the primary structure of human placental factor XIIIa, an enzyme [fibrinoligase, transglutaminase, fibrin-stabilizing factor, EC 2.3.2.13 (protein-glutamine:amine gamma-glutamyltransferase)] that forms intermolecular isopeptide bonds between fibrin molecules as the last step in blood coagulation. Placental factor XIIIa is an unglycosylated polypeptide chain of 730 amino acid residues (Mr = 83,005) that appears to be identical to the a subunit of the plasma zymogen factor XIII. Ca2+-dependent activation of factor XIIIa by thrombin removes a blocked amino-terminal peptide and unmasks a reactive thiol group at Cys-314. A second specific cleavage after Lys-513 by thrombin inactivates factor XIIIa and produces an amino-terminal 56-kDa fragment and a 24-kDa fragment. The amino acid sequence of factor XIIIa is unique and does not exhibit internal homology, but its active center is similar to that of the thiol proteases. The probable Ca2+-binding site of factor XIIIa has been identified by homology to the high-affinity sites in calmodulins. Knowledge of the primary structure of factor XIIIa will aid elucidation of the mechanism of its enzymatic action and that of the many tissue transglutaminases of which it is the prototype. This will also facilitate production of factor XIIIa by recombinant DNA technology for use in treatment of congenital factor XIII deficiencies and in the postoperative healing of wounds.

摘要

我们已经确定了人胎盘因子XIIIa的一级结构,它是一种酶[纤维蛋白连接酶、转谷氨酰胺酶、纤维蛋白稳定因子,EC 2.3.2.13(蛋白质-谷氨酰胺:胺γ-谷氨酰转移酶)],在血液凝固的最后一步,它在纤维蛋白分子之间形成分子间异肽键。胎盘因子XIIIa是一条由730个氨基酸残基组成的非糖基化多肽链(Mr = 83,005),似乎与血浆酶原因子XIII的a亚基相同。凝血酶对因子XIIIa的Ca2+依赖性激活会去除一个被封闭的氨基末端肽,并在Cys-314处暴露出一个反应性巯基。凝血酶在Lys-513之后的第二次特异性切割会使因子XIIIa失活,并产生一个氨基末端56-kDa片段和一个24-kDa片段。因子XIIIa的氨基酸序列是独特的,不显示内部同源性,但其活性中心与巯基蛋白酶的活性中心相似。通过与钙调蛋白中的高亲和力位点进行同源性分析,已经确定了因子XIIIa可能的Ca2+结合位点。了解因子XIIIa的一级结构将有助于阐明其酶促作用机制以及它作为原型的许多组织转谷氨酰胺酶的作用机制。这也将促进通过重组DNA技术生产因子XIIIa,用于治疗先天性因子XIII缺乏症和伤口的术后愈合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67ad/386858/18fc56faae13/pnas00325-0011-a.jpg

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