首页> 美国卫生研究院文献>other >BINDING OF THE RESPIRATORY CHAIN INHIBITOR ANTIMYCIN TO THE MITOCHONDRIAL bc1 COMPLEX: A NEW CRYSTAL STRUCTURE REVEALS AN ALTERED INTRAMOLECULAR HYDROGEN-BONDING PATTERN.
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BINDING OF THE RESPIRATORY CHAIN INHIBITOR ANTIMYCIN TO THE MITOCHONDRIAL bc1 COMPLEX: A NEW CRYSTAL STRUCTURE REVEALS AN ALTERED INTRAMOLECULAR HYDROGEN-BONDING PATTERN.

机译:呼吸链抑制剂安迪素与线粒体bc1复合体的结合:一种新的晶体结构揭示了一种改变的分子间氢键结合模式。

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摘要

Antimycin A (antimycin), one of the first known and most potent inhibitors of the mitochondrial respiratory chain, binds to the quinone reduction site of the cytochrome bc1 complex. Structure-activity-relationship studies have shown that the N-formylamino-salicylamide group is responsible for most of the binding specificity, and suggested that a low pKa for the phenolic OH group and an intramolecular H-bond between that OH and the carbonyl O of the salicylamide linkage are important.Two previous X-ray structures of antimycin bound to vertebrate bc1 complex gave conflicting results. A new structure reported here of the bovine mitochondrial bc1 complex at 2.28 Å resolution with antimycin bound, allows us for the first time to reliably describe the binding of antimycin and shows that the intramolecular hydrogen bond described in solution and in the small-molecule structure is replaced by one involving the NH rather than carbonyl O of the amide linkage, with rotation of the amide group relative to the aromatic ring. The phenolic OH and formylamino N form H-bonds with conserved Asp228 of cyt b, and the formylamino O H-bonds via a water molecule to Lys227. A strong density the right size and shape for a diatomic molecule is found between the other side of the dilactone ring and the αA helix.
机译:抗霉素A(抗霉素)是最早的线粒体呼吸链抑制剂之一,它与细胞色素bc1复合体的醌还原位点结合。结构-活性-关系研究表明,N-甲酰氨基-水杨酰胺基团是大多数结合特异性的原因,并且表明酚羟基的pKa较低,且该羟基与羟基的羰基O之间存在分子内的H键。水杨酰胺键很重要。先前与抗脊椎动物bc1复合物结合的抗霉素X射线结构给出了相互矛盾的结果。此处报道的牛线粒体bc1复合物的新结构具有2.28Å的分辨率与抗霉素结合,这使我们首次能够可靠地描述抗霉素的结合,并表明溶液中和小分子结构中所述的分子内氢键为用酰胺基相对于芳环的旋转来取代,该取代基被涉及NH而不是酰胺键的羰基O的酰胺取代。酚羟基OH和甲酰氨基N与Cyt b的保守Asp228形成氢键,甲酰氨基O H通过水分子与Lys227形成键。在双内酯环的另一侧与αA螺旋之间发现了密度高,大小合适的双原子分子。

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