首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Differential efficacy of inhibition of mitochondrial and bacterial cytochrome bc(1) complexes by center N inhibitors antimycin, ilicicolin H and funiculosin
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Differential efficacy of inhibition of mitochondrial and bacterial cytochrome bc(1) complexes by center N inhibitors antimycin, ilicicolin H and funiculosin

机译:N中心抑制剂抗霉素,伊利卡林H和真菌素对线粒体和细菌细胞色素bc(1)复合物的抑制作用差异

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We have compared the efficacy of inhibition of the cytochrome bc(1) complexes from yeast and bovine heart mitochondria. and Paracoccus denitrificans by antimycin, ilicicolin H, and funiculosin, three inhibitors that act at the quinone reduction site at center N of the enzyme. Although the three inhibitors have some structural features in common, they differ significantly in their patterns of inhibition. Also, while the overall folding pattern of cytochrome b around center N is similar in the enzymes from the three species, amino acid sequence differences create sufficient structural differences so that there are striking differences in the inhibitors binding to the three enzymes. Antimycin is the most tightly bound of the three inhibitors, and binds stoichiometrically to the isolated enzymes from all three species under the cytochrome c reductase assay conditions. Ilicicolin H also binds stoichiometrically to the yeast enzyme, but binds approximately 2 orders of magnitude less tightly to the bovine enzyme and is essentially non-inhibitory to the Paracoccus enzyme. Funiculosin on the other hand inhibits the yeast and bovine enzymes similarly, with IC50 similar to 10 nM, while the IC50 for the Paracoccus enzyme is more than 10-fold higher. Similar differences in inhibitor efficacy were noted in bc(1) complexes from yeast mutants with single amino acid substitutions at the center N site, although the binding affinity of quinone and quinol substrates were not perturbed to a degree that impaired catalytic function in the variant enzymes. These results reveal a high degree of specificity in the determinants of ligand-binding at center N, accompanied by sufficient structural plasticity for substrate binding as to not compromise center N function. The results also demonstrate that, in principle, it should be possible to design novel inhibitors targeted toward center N of the bc(1) complex with appropriate species selectivity to allow their use as drugs against pathogenic fungi and parasites. (c) 2007 Elsevier B.V. All rights reserved.
机译:我们已经比较了抑制酵母和牛心脏线粒体细胞色素bc(1)复合物的功效。抗炎药,依力克林H和真菌素,这三种抑制剂在酶中心N的醌还原位起作用。尽管这三种抑制剂具有一些共同的结构特征,但它们的抑制方式差异很大。同样,虽然来自三种物种的酶中细胞色素b围绕中心N的整体折叠模式相似,但氨基酸序列差异产生了足够的结构差异,因此与三种酶结合的抑制剂存在显着差异。抗霉素是三种抑制剂中最紧密结合的,在细胞色素C还原酶测定条件下,化学计量学上与所有三种物种分离的酶化学结合。 Ilicicolin H在化学计量上也与酵母酶结合,但与牛酶的结合少约2个数量级,并且对Paracoccus酶基本上无抑制作用。另一方面,Funiculosin对酵母和牛酶的抑制作用相似,IC50接近10 nM,而对副球菌的IC50则高10倍以上。抑制剂突变体的bc(1)复合物在中心N位点具有单个氨基酸取代的bc(1)络合物中发现了相似的抑制剂功效差异,尽管醌和喹诺酮底物的结合亲和力并未受到影响,从而不会影响变异酶中的催化功能。 。这些结果揭示了在中心N处的配体结合的决定因素具有高度的特异性,并伴随有足够的结构可塑性以用于底物结合而不损害中心N的功能。结果还表明,原则上,应该有可能设计针对bc(1)复合体中心N的新型抑制剂,并具有适当的物种选择性,以使其可用作对抗病原性真菌和寄生虫的药物。 (c)2007 Elsevier B.V.保留所有权利。

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