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首页> 外文期刊>Acta crystallographica.Section D. Biological crystallography >Understanding the role of Leu22 variants in methotrexate resistance: comparison of wild-type and Leu22Arg variant mouse and human dihydrofolate reductase ternary crystal complexes with methotrexate and NADPH
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Understanding the role of Leu22 variants in methotrexate resistance: comparison of wild-type and Leu22Arg variant mouse and human dihydrofolate reductase ternary crystal complexes with methotrexate and NADPH

机译:理解Leu22变异的作用甲氨蝶呤阻力:野生型的比较老鼠和人类和Leu22Arg变体二氢叶酸还原酶三元晶体复合物甲氨蝶呤和NADPH

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Structural data are reported to 2.5 Angstrom resolution for the first full analysis of the methotrexate-resistant Leu22Arg (L22R) variant of mouse dihydrofolate reductase (mDHFR) crystallized as a ternary complex with methotrexate (MTX) and the cofactor NADPH. These results are compared with the MTX and NADPH ternary complexes of L22R human DHFR (hDHFR) and those of mouse and human wild-type DHFR enzymes. The conformation of mDHFR Arg22 is such that it makes hydrogen-bonding contacts with Asp21, Trp24 and a structural water molecule, observations which were not made in the L22R hDHFR ternary complex. These data show that there is little difference between the structures of the wild type and L22R variant for either mouse or human DHFR; however, there are significant differences between the species. Comparison of these structures reveals that the active site of mDHFR is larger than that in the hDHFR structure. In mDHFR, the position of MTX is shifted 0.6 Angstrom toward helix C (residues 59-65), which in turn is shifted 1.2 Angstrom away from the active site relative to that observed in the hDHFR ternary complexes. In the L22R variant mDHFR structure, MTX makes shorter contacts to the conserved residues I1e7, Val115 and Tyr121 than in the L22R variant human DHFR structure. These contacts are comparable in both wild-type enzymes. The unexpected results from this comparison of the mouse and human DHFR complexes bound with the same ligand and cofactor illustrate the importance of detailed study of several species of enzyme, even when there is a high sequence homology between them. These data suggest that the differences in binding interactions of the L22R variant are in agreement with the weaker binding affinity for MTX in the variant enzymes; the larger size of the binding site in mDHFR supports the observation that the binding affinity of MTX for L22R mDHFR is significantly weaker than that of the L22R hDHFR enzyme.
机译:结构数据报2.5埃决议的第一个完整的分析methotrexate-resistant Leu22Arg (L22R)的变体鼠标二氢叶酸还原酶(mDHFR)结晶是一个三元复杂氨甲叶酸(简称MTX)和辅因子NADPH。结果与MTX和NADPH三元复合物L22R人类DHFR (hDHFR)和老鼠和人类的野生型DHFR酶。的构象mDHFR Arg22是这样使氢键接触Asp21 Trp24和结构的水分子,观察这不是在L22R hDHFR三元复杂。野性的结构之间的区别类型和L22R变异老鼠或人类DHFR;在物种之间。结构表明,mDHFR的活性部位大于hDHFR结构。0.6 mDHFR, MTX的位置转移埃向螺旋C(残留59 - 65)反过来改变1.2埃远离相对于观察到的活性部位hDHFR三元配合物。mDHFR结构,简称MTX使短接触守恒的残留I1e7, Val115 Tyr121比人类DHFR L22R变体结构。这些联系是比较野生型酶。对比老鼠和人类DHFR复合物绑定相同的配体和辅助因子说明详细研究的重要性几个种类的酶,即使有一个序列之间的同源性很高。表明不同的绑定L22R变异的交互协议较弱的MTX的亲和力变异酶;网站mDHFR支持的观察亲和力的MTX L22R mDHFR的显著弱于L22R hDHFR酶。

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