Harrington P C, Wilkins R G
J Biol Chem. 1979 Aug 25;254(16):7505-8.
The rate constants for reduction of methemerythrin from Phascolopsis gouldii and Themiste pyroides by hydrated electrons are 2.0 and 3.9 x 10(9) M(-1)s(-1), respectively, at pH 8.2, I = 0.03 M, and 25 degrees C. There is only a small increase in rate when the pH is lowered to 6.3 and a very small decrease when the ionic strength is raised to 0.1 M. Adding azide ion (to form the met-azide adduct) has little effect on the reactivity towards e-aq. For the monomer form, metmyohemerythrin from T. pyroides, the reaction rate constant is 4.5 x 10(9) M(-1)s(-1). Methemerythrin from T. pyroides reacts with CO2- with a rate constant 6.8 x 10(7) M(-1)s(-1). The reactivity sequence e-aq greater than CO2- greater than SO2- (from dithionite reduction) towards methemerythrin is the same as that observed with reduction of heme proteins but the rate constants are some 10 to 100 times smaller for the former. Only 10 to 20% of the e-aq or CO2- radicals generated effect reduction of the iron centers in methemerythrin.
在pH值8.2、离子强度I = 0.03 M以及25摄氏度条件下,来自古尔德潜鱼(Phascolopsis gouldii)和火红多毛虫(Themiste pyroides)的高铁血红素蛋白被水合电子还原的速率常数分别为2.0和3.9×10⁹ M⁻¹s⁻¹。当pH值降至6.3时,反应速率仅有小幅增加;而当离子强度升至0.1 M时,反应速率仅有极小幅度的降低。添加叠氮离子(以形成高铁叠氮加合物)对与水合电子的反应活性影响不大。对于单体形式的来自火红多毛虫的高铁肌红蛋白,反应速率常数为4.5×10⁹ M⁻¹s⁻¹。来自火红多毛虫的高铁血红素蛋白与CO₂⁻反应的速率常数为6.8×10⁷ M⁻¹s⁻¹。水合电子>CO₂⁻>SO₂⁻(来自连二亚硫酸盐还原)对高铁血红素蛋白的反应活性顺序与观察到的血红素蛋白还原情况相同,但前者的速率常数要小10到100倍左右。所产生的水合电子或CO₂⁻自由基中只有10%到20%能使高铁血红素蛋白中的铁中心发生还原反应。