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氰化物与大肠杆菌直接氧传感器的高铁血红素结构域结合的pH依赖性及碱性变性的影响

pH dependence of cyanide binding to the ferric heme domain of the direct oxygen sensor from Escherichia coli and the effect of alkaline denaturation.

作者信息

Bidwai Anil K, Ok Esther Y, Erman James E

机构信息

Department of Chemistry and Biochemistry, Northern Illinois University, DeKalb, Illinois 60115, USA.

出版信息

Biochemistry. 2008 Sep 30;47(39):10458-70. doi: 10.1021/bi800872d. Epub 2008 Sep 5.

Abstract

The spectrum of the ferric heme domain of the direct oxygen sensor protein from Escherichia coli ( EcDosH) has been measured between pH 3.0 and 12.6. EcDosH undergoes acid denaturation with an apparent p K a of 4.24 +/- 0.05 and a Hill coefficient of 3.1 +/- 0.6 and reversible alkaline denaturation with a p K a of 9.86 +/- 0.04 and a Hill coefficient of 1.1 +/- 0.1. Cyanide binding to EcDosH has been investigated between pH 4 and 11. The EcDosH-cyanide complex is most stable at pH 9 with a K D of 0.29 +/- 0.06 microM. The kinetics of cyanide binding are monophasic between pH 4 and 8. At pH >or=8.5, the reaction is biphasic with the fast phase dependent upon the cyanide concentration and the slow phase independent of cyanide. The slow phase is attributed to conversion of denatured EcDosH to the native state, with a pH-independent rate of 0.052 +/- 0.006 s (-1). The apparent association rate constant for cyanide binding to EcDosH increases from 3.6 +/- 0.1 M (-1) s (-1) at pH 4 to 520 +/- 20 M (-1) s (-1) at pH 11. The dissociation rate constant averages (8.6 +/- 1.3) x 10 (-5) s (-1) between pH 5 and 9, increasing to (1.4 +/- 0.1) x 10 (-3) s (-1) at pH 4 and (2.5 +/- 0.1) x 10 (-3) s (-1) at pH 12.2. The mechanism of cyanide binding is consistent with preferential binding of the cyanide anion to native EcDosH. The reactions of imidazole and H 2O 2 with ferric EcDosH were also investigated and show little reactivity.

摘要

已在pH 3.0至12.6之间测量了来自大肠杆菌的直接氧传感器蛋白(EcDosH)的铁血红素结构域的光谱。EcDosH经历酸变性,其表观pKa为4.24±0.05,希尔系数为3.1±0.6,以及可逆的碱变性,pKa为9.86±0.04,希尔系数为1.1±0.1。已在pH 4至11之间研究了氰化物与EcDosH的结合。EcDosH-氰化物复合物在pH 9时最稳定,KD为0.29±0.06 microM。在pH 4至8之间,氰化物结合动力学是单相的。在pH≥8.5时,反应是双相的,快相取决于氰化物浓度,慢相与氰化物无关。慢相归因于变性的EcDosH向天然状态的转变,其pH无关速率为0.052±0.006 s(-1)。氰化物与EcDosH结合的表观缔合速率常数从pH 4时的3.6±0.1 M(-1)s(-1)增加到pH 11时的520±20 M(-1)s(-1)。解离速率常数在pH 5至9之间平均为(8.6±1.3)×10(-5)s(-1),在pH 4时增加到(1.4±0.1)×10(-3)s(-1),在pH 12.2时增加到(2.5±0.1)×10(-3)s(-1)。氰化物结合的机制与氰化物阴离子优先结合天然EcDosH一致。还研究了咪唑和H2O2与铁EcDosH的反应,结果显示反应活性很小。

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