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首页> 外文期刊>Biochemistry >ELUCIDATION OF A MGATP SIGNAL TRANSDUCTION PATHWAY IN THE NITROGENASE IRON PROTEIN - FORMATION OF A CONFORMATION RESEMBLING THE MGATP-BOUND STATE BY PROTEIN ENGINEERING
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ELUCIDATION OF A MGATP SIGNAL TRANSDUCTION PATHWAY IN THE NITROGENASE IRON PROTEIN - FORMATION OF A CONFORMATION RESEMBLING THE MGATP-BOUND STATE BY PROTEIN ENGINEERING

机译:固氮酶铁蛋白中MGATP信号转导途径的电泳-通过蛋白质工程形成反映MGATP结合态的构象。

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The present work defines one MgATP signal transduction pathway in the nitrogenase iron (Fe) protein. Deletion of an amino acid (Leu 127) by site-directed mutagenesis in the protein chain between Asp 125, located in the ATP binding site, and Cys 132, a ligand to the [4Fe-4S] cluster, resulted in protein conformational changes resembling the MgATP-bound state in the absence of any bound nucleotides. Specifically, H-1 nuclear magnetic resonance, electron paramagnetic resonance, and circular dichroism spectroscopic properties, along with Fe chelation assays, suggested that deletion of Leu 127 in the Fe protein resulted in changes in the electronic properties of the [4Fe-4S] cluster similar to those normally observed upon MgATP binding to the wild-type Fe protein. Deletion of Leu 127 of the Fe protein lowered the redox potential of the [4Fe-4S] cluster by 112 mV compared to the wild-type Fe protein (-412 mV compared to -294 mV). A nearly identical lowering of the redox potential by 120 mV occurs in the wild-type Fe protein upon binding MgATP (-294 mV compared to -420 mV). The L127 Delta Fe protein did not contain bound nucleotides which could account for the observed conformational changes. The present results support a model in which the protein chain from Asp 125 to Cys 132 acts as one pathway for MgATP signal transduction and suggests a mechanism for this transduction to the [4Fe-4S] cluster. The L127 Delta Fe protein was found to still bind 2 MgATP or 2 MgADP molecules/Fe protein. Unlike the wild-type Fe protein, the L127 Delta Fe protein bound 2 ADP molecules/Fe protein in the absence of Mg2+. Finally, the L127 Delta Fe protein was found to bind to the MoFe protein, although the complex did not catalyze MgATP hydrolysis or substrate reduction. In concurrence with previous models, homologies between the Asp 125 to Cys 132 transduction pathway in Fe protein and the switch II region of the broad class of GTPase signal transduction proteins (G-proteins) are discussed.
机译:本工作定义了一种固氮酶铁(Fe)蛋白中的MgATP信号转导途径。通过位于ATP结合位点的Asp 125和[4Fe-4S]簇的配体Cys 132之间的蛋白链中的定点诱变删除氨基酸(Leu 127),导致类似蛋白的构象变化在没有任何结合核苷酸的情况下,MgATP结合状态。具体而言,H-1核磁共振,电子顺磁共振和圆二色光谱特性以及Fe螯合测定表明,Fe蛋白中Leu 127的缺失导致[4Fe-4S]簇的电子性质发生变化。与MgATP结合野生型Fe蛋白时通常观察到的相似。与野生型Fe蛋白相比,Fe蛋白Leu 127的缺失将[4Fe-4S]簇的氧化还原电位降低了112 mV(-412 mV与-294 mV相比)。与MgATP结合后,野生型Fe蛋白的氧化还原电位降低几乎相同,降低了120 mV(-294 mV,-420 mV)。 L127 Delta Fe蛋白不包含结合核苷酸,这可以解释观察到的构象变化。目前的结果支持一种模型,其中从Asp 125到Cys 132的蛋白质链充当MgATP信号转导的一种途径,并提出了这种转导到[4Fe-4S]簇的机制。发现L127 Delta Fe蛋白仍然结合2 MgATP或2 MgADP分子/ Fe蛋白。与野生型Fe蛋白不同,L127 Delta Fe蛋白在没有Mg2 +的情况下结合2个ADP分子/ Fe蛋白。最后,发现L127 Delta Fe蛋白与MoFe蛋白结合,尽管该复合物不能催化MgATP水解或底物还原。与以前的模型一致,讨论了Fe蛋白中Asp 125到Cys 132的转导途径与GTPase信号转导蛋白(G蛋白)的广泛II类开关II区之间的同源性。

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