Department of Chemistry, University of Texas at Austin, Austin, Texas 78712, United States.
Department of Chemistry, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, United States.
Biochemistry. 2023 Jan 17;62(2):388-395. doi: 10.1021/acs.biochem.2c00300. Epub 2022 Oct 10.
Heme-copper oxidases (HCOs) utilize tyrosine (Tyr) to donate one of the four electrons required for the reduction of O to water in biological respiration, while tryptophan (Trp) is speculated to fulfill the same role in cyt oxidases. We previously engineered myoglobin into a biosynthetic model of HCOs and demonstrated the critical role that Tyr serves in the oxygen reduction reaction (ORR). To address the roles of Tyr and Trp in these oxidases, we herein report the preparation of the same biosynthetic model with the Tyr replaced by Trp and further demonstrate that Trp can also promote the ORR, albeit with lower activity. An X-ray crystal structure of the Trp variant shows a hydrogen-bonding network involving two water molecules that are organized by Trp, similar to that in the Tyr variant, which is absent in the crystal structure with the native Phe residue. Additional electron paramagnetic resonance measurements are consistent with the formation of a Trp radical species upon reacting with HO. We attribute the lower activity of the Trp variant to Trp's higher reduction potential relative to Tyr. Together, these findings demonstrate, for the first time, that Trp can indeed promote the ORR and provides a structural basis for the observation of varying activities. The results support a redox role for the conserved Trp in oxidase while suggesting that HCOs use Tyr instead of Trp to achieve higher reactivity.
血红素铜氧化酶 (HCOs) 利用酪氨酸 (Tyr) 捐献生物呼吸中还原 O 到水所需的四个电子中的一个,而色氨酸 (Trp) 被推测在细胞色素氧化酶中发挥相同的作用。我们之前将肌红蛋白工程化为 HCOs 的生物合成模型,并证明了 Tyr 在氧还原反应 (ORR) 中的关键作用。为了解决 Tyr 和 Trp 在这些氧化酶中的作用,我们在此报告了用 Trp 替代 Tyr 的相同生物合成模型的制备,并进一步证明 Trp 也可以促进 ORR,尽管活性较低。色氨酸变体的 X 射线晶体结构显示了涉及两个水分子的氢键网络,这些水分子由 Trp 组织,类似于 Tyr 变体中的情况,而在含有天然 Phe 残基的晶体结构中不存在这种情况。额外的电子顺磁共振测量结果与 HO 反应时形成 Trp 自由基物种一致。我们将 Trp 变体的低活性归因于 Trp 的还原电位相对于 Tyr 较高。总之,这些发现首次表明 Trp 确实可以促进 ORR,并为观察到不同的活性提供了结构基础。该结果支持保守的 Trp 在细胞色素氧化酶中的氧化还原作用,同时表明 HCOs 使用 Tyr 而不是 Trp 来实现更高的反应性。