Michalczyk Elizabeth, Hommernick Kay, Behroz Iraj, Kulike Marcel, Pakosz-Stępień Zuzanna, Mazurek Lukasz, Seidel Maria, Kunert Maria, Santos Karine, von Moeller Holger, Loll Bernhard, Weston John B, Mainz Andi, Heddle Jonathan G, Süssmuth Roderich D, Ghilarov Dmitry
Malopolska Centre of Biotechnology, Jagiellonian University, Krakow, Poland.
Institut für Chemie, Technische Universität Berlin, Berlin, Germany.
Nat Catal. 2023;6(1):52-67. doi: 10.1038/s41929-022-00904-1. Epub 2023 Jan 23.
The peptide antibiotic albicidin is a DNA topoisomerase inhibitor with low-nanomolar bactericidal activity towards fluoroquinolone-resistant Gram-negative pathogens. However, its mode of action is poorly understood. We determined a 2.6 Å resolution cryoelectron microscopy structure of a ternary complex between topoisomerase DNA gyrase, a 217 bp double-stranded DNA fragment and albicidin. Albicidin employs a dual binding mechanism where one end of the molecule obstructs the crucial gyrase dimer interface, while the other intercalates between the fragments of cleaved DNA substrate. Thus, albicidin efficiently locks DNA gyrase, preventing it from religating DNA and completing its catalytic cycle. Two additional structures of this trapped state were determined using synthetic albicidin analogues that demonstrate improved solubility, and activity against a range of gyrase variants and topoisomerase IV. The extraordinary promiscuity of the DNA-intercalating region of albicidins and their excellent performance against fluoroquinolone-resistant bacteria holds great promise for the development of last-resort antibiotics.
肽抗生素白化菌素是一种DNA拓扑异构酶抑制剂,对耐氟喹诺酮革兰氏阴性病原体具有低纳摩尔杀菌活性。然而,其作用模式尚不清楚。我们确定了拓扑异构酶DNA促旋酶、一个217bp双链DNA片段和白化菌素之间三元复合物的2.6埃分辨率冷冻电子显微镜结构。白化菌素采用双重结合机制,分子的一端阻碍关键的促旋酶二聚体界面,而另一端插入切割后的DNA底物片段之间。因此,白化菌素有效地锁定了DNA促旋酶,阻止其重新连接DNA并完成催化循环。使用合成的白化菌素类似物确定了这种被困状态的另外两种结构,这些类似物表现出改善的溶解度,以及对一系列促旋酶变体和拓扑异构酶IV的活性。白化菌素DNA插入区域的非凡混杂性及其对耐氟喹诺酮细菌的优异性能为开发最后手段抗生素带来了巨大希望。