Sen Sanchayita, Krishnakumar Arathi, McClead Jammi, Johnson Michael K, Seefeldt Lance C, Szilagyi Robert K, Peters John W
Department of Chemistry and Biochemistry, Montana State University, 108 Gaines Hall, Bozeman, MT 59717, USA.
J Inorg Biochem. 2006 May;100(5-6):1041-52. doi: 10.1016/j.jinorgbio.2006.02.016. Epub 2006 Mar 3.
In the present work, determination of the structure of the nitrogenase Leu 127 deletion variant Fe protein with MgATP bound is presented, along with density functional theory calculations, to provide insights into the roles of MgATP in the nitrogenase reaction mechanism. Comparison of the MgATP-bound structure of this Fe protein to the nucleotide-free form indicates that the binding of MgATP does not alter the overall structure of the variant significantly with only small differences in the conformation of amino acids in direct contact with the two bound MgATP molecules being seen. The earlier observation of splitting of the [4Fe-4S] cluster into two [2Fe-2S] clusters was observed to be unaltered upon binding MgATP. Density functional theory was used to probe the assignment of ligands to the two [2Fe-2S] rhombs. The Mg(2+) environment in the MgATP-bound structure of the Leu127 deletion Fe protein is similar to that observed for the Fe protein in the nitrogenase Fe protein: MoFe protein complex stabilized by MgADP and tetrafluoroaluminate suggesting that large scale conformational change implicated for the Fe protein may not be mediated by changes in the Mg(2+) coordination. The results presented here indicated that MgATP may enhance the stability of an open conformation and prohibit intersubunit interactions, which have been implicated in promoting nucleotide hydrolysis. This could be critical to the tight control of MgATP hydrolysis observed within the nitrogenase complex and may be important for maintaining unidirectional electron flow toward substrate reduction.
在本研究中,我们展示了结合MgATP的固氮酶Leu 127缺失变体铁蛋白的结构测定结果,并进行了密度泛函理论计算,以深入了解MgATP在固氮酶反应机制中的作用。将该铁蛋白结合MgATP的结构与无核苷酸形式进行比较,结果表明,MgATP的结合并未显著改变变体的整体结构,仅在与两个结合的MgATP分子直接接触的氨基酸构象上存在微小差异。早期观察到的[4Fe-4S]簇分裂为两个[2Fe-2S]簇的现象在结合MgATP后未发生改变。利用密度泛函理论探究了两个[2Fe-2S]菱形的配体归属。Leu127缺失铁蛋白结合MgATP结构中的Mg(2+)环境与固氮酶铁蛋白:钼铁蛋白复合物中通过MgADP和四氟铝酸盐稳定的铁蛋白所观察到的环境相似,这表明推测铁蛋白发生的大规模构象变化可能不是由Mg(2+)配位变化介导的。此处给出的结果表明,MgATP可能增强开放构象的稳定性并阻止亚基间相互作用,而亚基间相互作用与促进核苷酸水解有关。这对于固氮酶复合物中观察到的MgATP水解的严格控制可能至关重要,并且对于维持向底物还原的单向电子流可能也很重要。