首页> 外文期刊>Journal of Computer-Aided Molecular Design >Binding of the Zn2+ ion to ferric uptake regulation protein from E-coli and the competition with Fe2+ binding: a molecular modeling study of the effect on DNA binding and conformational changes of Fur
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Binding of the Zn2+ ion to ferric uptake regulation protein from E-coli and the competition with Fe2+ binding: a molecular modeling study of the effect on DNA binding and conformational changes of Fur

机译:Zn2 +离子与大肠杆菌中铁的摄取调节蛋白的结合以及与Fe2 +结合的竞争:对DNA结合和Fur构象变化影响的分子模型研究

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摘要

The three dimensional structure of Ferric uptake regulation protein dimer from E. coli, determined by molecular modeling, was docked on a DNA fragment (iron box) and Zn2+ ions were added in two steps. The first step involved the binding of one Zn2+ ion to what is known as the zinc site which consists of the residues Cys 92, Cys 95, Asp 137, Asp141, Arg139, Glu 140, His 145 and His 143 with an average metal-Nitrogen distance of 2.5 a" and metal-oxygen distance of 3.1-3.2 a". The second Zn2+ ion is bound to the iron activating site formed from the residues Ile 50, His 71, Asn 72, Gly 97, Asp 105 and Ala 109. The binding of the second Zn2+ ion strengthened the binding of the first ion as indicated by the shortening of the zinc-residue distances. Fe2+, when added to the complex consisting of 2Zn(2+)/Fur dimer/DNA, replaced the Zn2+ ion in the zinc site and when a second Fe2+ was added, it replaced the second zinc ion in the iron activating site. The binding of both zinc and iron ions induced a similar change in Fur conformations, but shifted residues closer to DNA in a different manner. This is discussed along with a possible role for the Zn2+ ion in the Fur dimer binding of DNA in its repressor activity.
机译:通过分子建模确定的来自大肠杆菌的铁摄取调节蛋白二聚体的三维结构停靠在DNA片段(铁盒)上,并分两步添加Zn2 +离子。第一步涉及一个Zn2 +离子与锌位点的结合,该位点由残基Cys 92,Cys 95,Asp 137,Asp141,Arg139,Glu 140,His 145和His 143与平均金属氮组成距离为2.5 a“ ,金属-氧气距离为3.1-3.2 a” 。第二个Zn2 +离子结合到由残基Ile 50,His 71,Asn 72,Gly 97,Asp 105和Ala 109形成的铁活化位点。第二个Zn2 +离子的结合增强了第一个离子的结合,如锌残基距离的缩短。 Fe2 +,当添加到由2Zn(2 +)/ Fur二聚体/ DNA组成的复合物中时,会替换锌位点中的Zn2 +离子,当添加第二个Fe2 +时,它会替换铁激活位点中的第二个锌离子。锌和铁离子的结合诱导类似的Fur构象变化,但残基以不同的方式向DNA转移。讨论了Zn2 +离子在DNA的Fur二聚体结合中的阻遏活性中可能发挥的作用。

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