首页> 外文期刊>Nucleosides, Nucleotides and Nucleic Acids >The Effect of ITPA Polymorphisms on the Enzyme Kinetic Properties of Human Erythrocyte Inosine Triphosphatase Toward its Substrates ITP and 6-Thio-ITP
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The Effect of ITPA Polymorphisms on the Enzyme Kinetic Properties of Human Erythrocyte Inosine Triphosphatase Toward its Substrates ITP and 6-Thio-ITP

机译:ITPA多态性对人红细胞肌苷三磷酸酶向其底物ITP和6-Thio-ITP的酶动力学特性的影响

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The role of inosine triphosphatase (ITPase) in adverse drug reactions associated with thiopurine therapy is still under heavy debate. Surprisingly, little is known about the way thiopurines are handled by ITPase. We studied the effect of ITPA polymorphisms on the handling of inosine triphosphate (ITP) and thioinosine triphosphate (TITP) to gain more insight into this phenomenon. Human erythrocyte ITPase activity was measured by incubation with ITP using established protocols, and the generated inosine monophosphate (IMP) was measured using ion-pair RP-HPLC. Molecular analysis of the ITPA gene was performed to establish the genotype. Kinetic parameters were established for the two common polymorphisms for both ITP and TITP as substrates using the above mentioned protocol. Both ITP and TITP are substrates for ITPase and their enzyme activities are comparable. Substrate binding is not altered in the different ITPA polymorphisms. It is shown that the velocity of pyrophosphohydrolysis is compromised when the c.94C > A polymorphism is present, both in the heterozygous and in the homozygous state. TITP is handled by ITPase in a similar way as for ITP, which implies that TITP will accumulate in the erythrocytes of patients with an ITPase deficiency, resulting in adverse drug reactions (ADRs) on thiopurine therapy. In carriers of ITPA polymorphisms, the matter is more complex and the development of ADR may depend on additional epigenetic factors rather than on the accumulation of thiopurinenucleotides.
机译:肌苷三磷酸酶(ITPase)在与硫嘌呤治疗相关的不良药物反应中的作用仍在激烈的争论中。令人惊讶的是,对于ITPase处理硫嘌呤的方式知之甚少。我们研究了ITPA多态性对肌苷三磷酸(ITP)和硫代肌苷三磷酸(TITP)的处理作用,以便对此现象有更多的了解。通过使用既定规程与ITP孵育来测量人红细胞ITPase活性,并使用离子对RP-HPLC测量生成的肌苷一磷酸(IMP)。进行ITPA基因的分子分析以建立基因型。使用上述方案,为作为底物的ITP和TITP的两个常见多态性建立了动力学参数。 ITP和TITP都是ITPase的底物,它们的酶活性相当。在不同的ITPA多态性中,底物结合没有改变。结果表明,当c.94C> A多态性存在时,无论是杂合还是纯合状态,焦磷酸水解的速度都会受到影响。用ITPase处理TITP的方式与处理ITP相似,这意味着TITP会在ITPase缺乏症患者的红细胞中积聚,从而导致硫嘌呤治疗产生不良药物反应(ADR)。在ITPA多态性的携带者中,问题更加复杂,ADR的发展可能取决于其他表观遗传因素,而不是取决于硫嘌呤核苷酸的积累。

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