Department of Chemistry, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.
J Am Chem Soc. 2010 Jul 28;132(29):9970-2. doi: 10.1021/ja103516n.
A conserved 2-His-1-Glu metal center, as found in natural nonheme iron-containing enzymes, was engineered into sperm whale myoglobin by replacing Leu29 and Phe43 with Glu and His, respectively (swMb L29E, F43H, H64, called Fe(B)Mb(-His)). A high resolution (1.65 A) crystal structure of Cu(II)-CN(-)-Fe(B)Mb(-His) was determined, demonstrating that the unique 2-His-1-Glu metal center was successfully created within swMb. The Fe(B)Mb(-His) can bind Cu, Fe, or Zn ions, with both Cu(I)-Fe(B)Mb(-His) and Fe(II)-Fe(B)Mb(-His) exhibiting nitric oxide reductase (NOR) activities. Cu dependent NOR activity was significantly higher than that of Fe in the same metal binding site. EPR studies showed that the reduction of NO to N(2)O catalyzed by these two enzymes resulted in different intermediates; a five-coordinate heme-NO species was observed for Cu(I)-Fe(B)Mb(-His) due to the cleavage of the proximal heme Fe-His bond, while Fe(II)-Fe(B)Mb(-His) remained six-coordinate. Therefore, both the metal ligand, Glu29, and the metal itself, Cu or Fe, play crucial roles in NOR activity. This study presents a novel protein model of NOR and provides insights into a newly discovered member of the NOR family, gNOR.
一个保守的 2 个组氨酸-1 个谷氨酸金属中心,如天然非血红素含铁酶中发现的,通过分别用谷氨酸和组氨酸取代亮氨酸 29 和苯丙氨酸 43 而被工程化到抹香鲸肌红蛋白中(swMb L29E、F43H、H64,称为 Fe(B)Mb(-His))。一个 Cu(II)-CN(-)-Fe(B)Mb(-His) 的高分辨率(1.65 A)晶体结构被确定,证明独特的 2 个组氨酸-1 个谷氨酸金属中心在 swMb 内成功地被创造。Fe(B)Mb(-His)可以结合 Cu、Fe 或 Zn 离子,Cu(I)-Fe(B)Mb(-His)和 Fe(II)-Fe(B)Mb(-His)都具有一氧化氮还原酶(NOR)活性。在相同的金属结合位点,Cu 依赖的 NOR 活性明显高于 Fe。EPR 研究表明,这些两种酶催化的 NO 还原为 N(2)O 导致不同的中间体;由于近端血红素 Fe-His 键的断裂,Cu(I)-Fe(B)Mb(-His)观察到五配位血红素-NO 物种,而 Fe(II)-Fe(B)Mb(-His)保持六配位。因此,金属配体谷氨酸 29 和金属本身 Cu 或 Fe 都在 NOR 活性中起着关键作用。本研究提出了一个新的 NOR 蛋白模型,并提供了对 NOR 家族中新发现的成员 gNOR 的深入了解。