Rayner Benjamin S, Stocker Roland, Lay Peter A, Witting Paul K
Vascular Biology Group, ANZAC Research Institute, Hospital Road, Concord Repatriation General Hospital, Concord, NSW 2139, Australia.
Biochem J. 2004 Jul 15;381(Pt 2):365-72. doi: 10.1042/BJ20031924.
Mb (myoglobin) plus H2O2 catalyses the oxidation of various substrates via a peroxidase-like activity. A Y103F (Tyr103-->Phe) variant of human Mb has been constructed to assess the effect of exchanging an electron-rich oxidizable amino acid on the peroxidase activity of human Mb. Steady-state analyses of reaction mixtures containing Y103F Mb, purified linoleic acid and H2O2 revealed a lower total yield of lipid oxidation products than mixtures containing the wild-type protein, consistent with the reported decrease in the rate constant for reaction of Y103F Mb with H2O2 [Witting, Mauk and Lay (2002) Biochemistry 41, 11495-11503]. Irrespective of the Mb employed, lipid oxidation yielded 9(R/S)-HODE [9(R,S)-hydroxy-10E,12Z-octadecadienoic acid] in preference to 13(R/S)-HODE [13(R,S)-hydroxy-9Z,11E-octadecadienoic acid], while 9- and 13-keto-octadecadienoic acid were formed in trace amounts. However, lipid oxidation by the Y103F variant of Mb proceeded with a lower V(max) value and an increased K(m) value relative to the wild-type control. Consistent with the increased K(m), the product distribution from reactions with Y103F Mb showed decreased selectivity compared with the wild-type protein, as judged by the decreased yield of 9(S)-relative to 9(R)-HODE. Together, these data verify that Tyr103 plays a significant role in substrate binding and orientation in the haem pocket of human Mb. Also, the midpoint potential for the Fe(III)/(II) one-electron reduction was shifted slightly, but significantly, to a higher potential, confirming the importance of Tyr103 to the hydrogen-bonding network involving residues that line the haem crevice of human Mb.
肌红蛋白(Mb)与过氧化氢(H₂O₂)通过类似过氧化物酶的活性催化各种底物的氧化。构建了人肌红蛋白的Y103F(酪氨酸103突变为苯丙氨酸)变体,以评估交换一个富含电子的可氧化氨基酸对人肌红蛋白过氧化物酶活性的影响。对含有Y103F肌红蛋白、纯化的亚油酸和H₂O₂的反应混合物进行稳态分析发现,与含有野生型蛋白的混合物相比,脂质氧化产物的总产率较低,这与报道的Y103F肌红蛋白与H₂O₂反应速率常数降低一致[威廷、莫克和莱(2002年)《生物化学》41卷,第11495 - 11503页]。无论使用哪种肌红蛋白,脂质氧化产生9(R/S)-羟基十八碳二烯酸[9(R/S)-HODE]的优先程度高于13(R/S)-羟基十八碳二烯酸[13(R/S)-HODE],而9-和13-氧代十八碳二烯酸仅微量生成。然而,相对于野生型对照,Mb的Y103F变体进行脂质氧化时V(max)值较低且K(m)值增加。与K(m)增加一致,与Y103F肌红蛋白反应的产物分布显示,与野生型蛋白相比选择性降低,这可通过9(S)-相对于9(R)-HODE产率的降低来判断。总之,这些数据证实酪氨酸103在人肌红蛋白血红素口袋中的底物结合和定向中起重要作用。此外,Fe(III)/(II)单电子还原的中点电位略有但显著地向更高电位移动,证实了酪氨酸103对涉及人肌红蛋白血红素裂隙内衬残基的氢键网络的重要性。