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Characterization of the defect in activation of factor IX Chapel Hill by human factor XIa.

机译:表征人因子XIa在激活因子IX Chapel Hill中的缺陷。

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摘要

Factor IXChapel Hill (Factor IXCH), an abnormal Factor IX molecule isolated from the plasma of a patient with mild hemophilia B, has previously been shown to exhibit delayed activation by Factor XIa and calcium. In this study, we have found that Factor IXCH is cleaved upon incubation with human Factor XIa and calcium; however, cleavage of this protein is not observed by sodium dodecyl sulfate (SDS) polyacrylamide gel electrophoresis under nonreducing conditions. Under reducing conditions, the rate of disappearance of the zymogen parallels both the appearance of the heavy chain and the generation of clotting activity. In addition, a protein band that migrates with an apparent molecular weight of 45,000 also increases in parallel with clotting activity. Factor IXCH and normal Factor IX (Factor IXN), after incubation with Factor XIa and calcium, were subjected to amino terminal sequence analysis. Activated Factor IXN is cleaved at an arginine-alanine (Arg-Ala) bond and an arginine-valine (Arg-Val) bond as demonstrated by formation of the three amino terminal sequences corresponding to the amino terminal of the light chain, heavy chain, and activation peptide. However, activated Factor IXCH has only two amino terminal sequences, corresponding to the original amino terminal sequence and the heavy chain (formed by cleavage at the Arg-Val bond). It is concluded that the major defect in Factor IXCH is the inability of Factor XIa to cleave the Arg-Ala bond at a significant rate. The rate of formation of clotting activity of Factor IXCH is approximately 60% of the rate of formation of clotting activity of Factor IXN. The specific clotting activity of activated Factor IXCH is between 20 and 33% of activated Factor IXN.
机译:IX因子Chapel Hill(因子IXCH)是从患有轻度血友病B的患者血浆中分离出来的异常IX分子,先前已显示出其被XIa和钙的激活延迟。在这项研究中,我们发现与人因子XIa和钙一起孵育后,IXCH因子被裂解。但是,在非还原条件下,十二烷基硫酸钠(SDS)聚丙烯酰胺凝胶电泳未观察到该蛋白的切割。在还原条件下,酶原的消失速率与重链的出现和凝血活性的产生都平行。另外,以表观分子量为45,000迁移的蛋白带也与凝结活性同时增加。与因子XIa和钙孵育后,对因子IXCH和正常因子IX(因子IXN)进行氨基末端序列分析。活化因子IXN在一个精氨酸-丙氨酸(Arg-Ala)键和一个精氨酸-缬氨酸(Arg-Val)键处裂解,这是通过形成对应于轻链,重链,和激活肽。然而,活化的因子IXCH仅具有两个氨基末端序列,分别对应于原始氨基末端序列和重链(通过在Arg-Val键处的切割形成)。结论是,因子IXCH的主要缺陷是因子XIa无法以显着速率裂解Arg-Ala键。因子IXCH的凝血活性的形成速率约为因子I​​XN的凝血活性的形成速率的60%。活化的因子IXCH的比凝活性为活化的因子IXN的20至33%。

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