首页> 外文OA文献 >Replacement of isoleucine-397 by threonine in the clotting proteinase factor IXa (Los Angeles and Long Beach variants) affects macromolecular catalysis but not L-tosylarginine methyl ester hydrolysis. Lack of correlation between the ox brain prothrombin time and the mutation site in the variant proteins.
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Replacement of isoleucine-397 by threonine in the clotting proteinase factor IXa (Los Angeles and Long Beach variants) affects macromolecular catalysis but not L-tosylarginine methyl ester hydrolysis. Lack of correlation between the ox brain prothrombin time and the mutation site in the variant proteins.

机译:凝血蛋白酶因子IXa(洛杉矶和长滩变体)中的苏氨酸替代异亮氨酸397会影响大分子催化,但不会影响L-甲苯磺酸精氨酸的水解。牛脑凝血酶原时间与变异蛋白中的突变位点之间缺乏相关性。

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摘要

Previously, from the plasma of unrelated haemophilia-B patients, we isolated two non-functional Factor IX variants, namely Los Angeles (IXLA) and Long Beach (IXLB). Both variants could be cleaved to yield Factor IXa-like molecules, but were defective in catalysing the cleavage of Factor X (macromolecular substrate) and in binding to antithrombin III (macromolecular inhibitor). In the present study we have identified the mutation of IXLA by amplifying the exons (including flanking regions) as well as the 5' end of the gene by polymerase-chain-reaction (PCR) method and sequencing the amplified DNA by the dideoxy chain-termination method. Comparison of the normal IX and IXLA sequences revealed only one base substitution (T----C) in exon VIII of IXLA, with a predicted replacement of Ile-397 to Thr in the mature protein. This mutation is the same as found recently for IXLB. The observation that IXLB and IXLA have the same mutation is an unexpected finding, since, on the basis of their ox brain prothrombin time (PT, a test that measures the ability of the variant Factor IX molecules to inhibit the activation of Factor X by Factor VIIa-tissue factor complex), these variants have been classified into two different groups and were thought to be genetically different. Our observation thus suggests that the ox brain PT does not reflect the locus of mutation in the coding region of the variant molecules. However, our analysis suggests that the ox brain PT is related to Factor IX antigen concentration in the patient's plasma. Importantly, although the mutation in IXLA or IXLB protein is in the catalytic domain, purified IXaLA and IXaLB hydrolyse L-tosylarginine methyl ester at rates very similar to that of normal IXa. These data, in conjunction with our recent data on Factor IXBm Lake Elsinore (Ala-390----Val mutant), strengthen a conclusion that the peptide region containing residues 390-397 of normal Factor IXa plays an essential role in macromolecular substrate catalysis and inhibitor binding. However, the two mutations noted thus far in this region do not distort S1 binding site in the Factor IXa enzyme.
机译:以前,我们从不相关的B型血友病患者的血浆中分离出两个非功能性IX因子变异体,即洛杉矶(IXLA)和长滩(IXLB)。两种变体均可以被裂解以产生因子IXa样分子,但是在催化因子X(大分子底物)的裂解和与抗凝血酶III(大分子抑制剂)的结合方面存在缺陷。在本研究中,我们通过聚合酶链反应(PCR)方法扩增外显子(包括侧翼区域)以及基因的5'端,并通过双脱氧链-终止方法。正常IX和IXLA序列的比较显示,IXLA外显子VIII中仅一个碱基取代(T ---- C),预计成熟蛋白质中Ile-397会替换为Thr。该突变与最近发现的IXLB相同。 IXLB和IXLA具有相同突变的观察结果是一个出乎意料的发现,因为根据它们的牛脑凝血酶原时间(PT),该测试可测量变体IX分子抑制X因子活化的能力。 (VIIa-组织因子复合物),这些变体已被分为两个不同的组,并被认为在遗传上是不同的。因此,我们的观察结果表明,牛脑PT不能反映变异分子编码区域中的突变位点。但是,我们的分析表明,牛脑PT与患者血浆中的IX因子抗原浓度有关。重要的是,尽管IXLA或IXLB蛋白中的突变是在催化域中,但是纯化的IXaLA和IXaLB水解L-甲苯磺精氨酸甲酯的速率与正常IXa的速率非常相似。这些数据,结合我们最近在Elsinore因子IXBm湖(Ala-390 ---- Val突变体)上的数据,进一步得出结论,即含有正常IXa残基390-397残基的肽区域在大分子底物催化中起着至关重要的作用。和抑制剂结合。但是,到目前为止,在该区域中注意到的两个突变并未使IXa因子中的S1结合位点变形。

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