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Axial interactions in the mixed-valent CuA active site and role of the axial methionine in electron transfer

机译:混合价CuA活性位点中的轴向相互作用和轴向蛋氨酸在电子转移中的作用

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摘要

Within Cu-containing electron transfer active sites, the role of the axial ligand in type 1 sites is well defined, yet its role in the binuclear mixed-valent CuA sites is less clear. Recently, the mutation of the axial Met to Leu in a CuA site engineered into azurin (CuA Az) was found to have a limited effect on E0 relative to this mutation in blue copper (BC). Detailed low-temperature absorption and magnetic circular dichroism, resonance Raman, and electron paramagnetic resonance studies on CuA Az (WT) and its M123X (X = Q, L, H) axial ligand variants indicated stronger axial ligation in M123L/H. Spectroscopically validated density functional theory calculations show that the smaller ΔE0 is attributed to H2O coordination to the Cu center in the M123L mutant in CuA but not in the equivalent BC variant. The comparable stabilization energy of the oxidized over the reduced state in CuA and BC (CuA ∼ 180 mV; BC ∼ 250 mV) indicates that the S(Met) influences E0 similarly in both. Electron delocalization over two Cu centers in CuA was found to minimize the Jahn–Teller distortion induced by the axial Met ligand and lower the inner-sphere reorganization energy. The Cu–S(Met) bond in oxidized CuA is weak (5.2 kcal/mol) but energetically similar to that of BC, which demonstrates that the protein matrix also serves an entatic role in keeping the Met bound to the active site to tune down E0 while maintaining a low reorganization energy required for rapid electron transfer under physiological conditions.
机译:在含铜的电子转移活性位点中,轴向配体在1型位点中的作用已得到明确定义,但在双核混合价CuA位点中的作用尚不清楚。最近,发现在工程化为天青蛋白的CuA位点(CuA Az)中,轴向Met突变为Leu对E 0 的作用相对于蓝铜(BC)的突变是有限的。对CuA Az(WT)及其M123X(X = Q,L,H)轴向配体的详细低温吸收和磁圆二色性,共振拉曼和电子顺磁共振研究表明,M123L / H中的轴向连接更牢固。经光谱验证的密度泛函理论计算结果表明,较小的ΔE 0 归因于CuA的M123L突变体中Cu中心的水配位,而不是等效的BC变体。在CuA和BC中,在还原状态下可氧化的稳定能量相当(CuA〜180 mV; BC〜250 mV),表明S(Met)对E 0 的影响相似。发现CuA中两个Cu中心的电子离域可最大程度地减少轴向Met配体引起的Jahn–Teller畸变并降低内球的重组能。氧化的CuA中的Cu–S(Met)键较弱(5.2 kcal / mol),但在能量上与BC相似,这表明蛋白质基质在保持Met结合到活性位点以调低分子量方面也起着至关重要的作用。 E 0 ,同时在生理条件下保持快速电子转移所需的低重组能。

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