Cadoux Cécile, Ratcliff Daniel, Maslać Nevena, Gu Wenyu, Tsakoumagkos Ioannis, Hoogendoorn Sascha, Wagner Tristan, Milton Ross D
Department of Inorganic and Analytical Chemistry, Faculty of Sciences, University of Geneva, Quai Ernest-Ansermet 30, 1211 Geneva 4, Switzerland.
National Centre of Competence in Research (NCCR) Catalysis, University of Geneva, Quai Ernest-Ansermet 30, 1211 Geneva 4, Switzerland.
JACS Au. 2023 May 9;3(5):1521-1533. doi: 10.1021/jacsau.3c00165. eCollection 2023 May 22.
The substrate-reducing proteins of all nitrogenases (MoFe, VFe, and FeFe) are organized as αß(γ) multimers with two functional halves. While their dimeric organization could afford improved structural stability of nitrogenases , previous research has proposed both negative and positive cooperativity contributions with respect to enzymatic activity. Here, a 1.4 kDa peptide was covalently introduced in the proximity of the P cluster, corresponding to the Fe protein docking position. The Strep-tag carried by the added peptide simultaneously sterically inhibits electron delivery to the MoFe protein and allows the isolation of partially inhibited MoFe proteins (where the half-inhibited MoFe protein was targeted). We confirm that the partially functional MoFe protein retains its ability to reduce N to NH, with no significant difference in selectivity over obligatory/parasitic H formation. Our experiment concludes that wild-type nitrogenase exhibits negative cooperativity during the steady state regarding H and NH formation (under Ar or N), with one-half of the MoFe protein inhibiting turnover in the second half. This emphasizes the presence and importance of long-range (>95 Å) protein-protein communication in biological N fixation in .
所有固氮酶(钼铁、钒铁和铁铁固氮酶)的底物还原蛋白都以具有两个功能半体的αß(γ)多聚体形式存在。虽然其二聚体结构可以提高固氮酶的结构稳定性,但先前的研究针对酶活性提出了负协同和正协同作用。在此,一个1.4 kDa的肽被共价引入到P簇附近,该位置对应于铁蛋白的对接位置。添加的肽携带的链霉亲和素标签在空间上同时抑制向钼铁蛋白的电子传递,并允许分离部分受抑制的钼铁蛋白(其中以半抑制的钼铁蛋白为目标)。我们证实,部分功能化的钼铁蛋白保留了将N还原为NH的能力,在选择性形成必需的/寄生的H方面没有显著差异。我们的实验得出结论,野生型固氮酶在稳态下关于H和NH的形成(在Ar或N气氛下)表现出负协同作用,其中一半的钼铁蛋白在另一半中抑制周转。这强调了在生物固氮中远程(>95 Å)蛋白质-蛋白质通讯的存在和重要性。