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首页> 外文期刊>Biochemistry >Evolving the [myoglobin, cytochrome b _5] complex from dynamic toward simple docking: Charging the electron transfer reactive patch
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Evolving the [myoglobin, cytochrome b _5] complex from dynamic toward simple docking: Charging the electron transfer reactive patch

机译:使[肌红蛋白,细胞色素b _5]复合物从动态演变为简单对接:给电子转移反应性斑块充电

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We describe photoinitiated electron transfer (ET) from a suite of Zn-substituted myoglobin (Mb) variants to cytochrome b _5 (b _5). An electrostatic interface redesign strategy has led to the introduction of positive charges into the vicinity of the heme edge through D/E → K charge-reversal mutation combinations at "hot spot" residues (D44, D60, and E85), augmented by the elimination of negative charges from Mb or b 5 by neutralization of heme propionates. These variations create an unprecedentedly large range in the product of the ET partners' total charges (-5 < -q _(Mb)q _b5 < 40). The binding affinity (K _a) increases 1000-fold as -q _(Mb)q _b5 increases through this range and exhibits a surprisingly simple, exponential dependence on -q _(Mb)q _b5. This is explained in terms of electrostatic interactions between a "charged reactive patch" (crp) on each partner's surface, defined as a compact region around the heme edge that (i) contains the total protein charge of each variant and (ii) encompasses a major fraction of the "reactive region" (Rr) comprising surface atoms with large matrix elements for electron tunneling to the heme. As -q _(Mb)q _b5 increases, the complex undergoes a transition from fast to slow-exchange dynamics on the triplet ET time scale, with a correlated progression in the rate constants for intracomplex (k _(et)) and bimolecular (k _2) ET. This progression is analyzed by integrating the crp and Rr descriptions of ET into the textbook steady-state treatment of reversible binding between partners that undergo intracomplex ET and found to encompass the full range of behaviors predicted by the model. The generality of this approach is demonstrated by its application to the extensive body of data for the ET complex between the photosynthetic reaction center and cytochrome c _2. Deviations from this model also are discussed.
机译:我们描述了从一组锌取代的肌红蛋白(Mb)变体到细胞色素b _5(b _5)的光引发电子转移(ET)。静电接口的重新设计策略已导致通过“热点”残基(D44,D60和E85)处的D / E→K电荷反转突变组合将正电荷引入血红素边缘附近,并通过消除消除来增强通过中和丙酸血红素来消除Mb或b 5的负电荷。这些差异为ET合作伙伴的总费用带来了前所未有的大幅度变化(-5 <-q _(Mb)q _b5 <40)。随着-q _(Mb)q _b5在此范围内的增加,结合亲和力(K _a)增加1000倍,并且对-q _(Mb)q _b5表现出惊人的简单,指数依赖性。这是根据每个伴侣表面上“带电反应性贴剂”(crp)之间的静电相互作用来解释的,定义为血红素边缘周围的致密区域,其中(i)包含每个变体的总蛋白电荷,并且(ii)包含一个“反应区”(Rr)的主要部分包含具有大基质元素的表面原子,用于电子隧穿至血红素。随着-q _(Mb)q _b5的增加,复合物在三重态ET时间尺度上经历从快速交换动力学到缓慢交换动力学的转变,内部复合物(k _(et))和双分子( k _2)ET。通过将ET的crp和Rr描述集成到教科书中对经历复杂的ET的伙伴之间可逆结合的稳态处理中,分析了这种进展,发现该伙伴涵盖了模型预测的行为的全部范围。这种方法的普遍性通过将其应用于光合作用中心和细胞色素c _2之间的ET络合物的大量数据得到证明。还讨论了与该模型的偏差。

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