Structural Elucidation of the Mechanism for Inhibitor Resistance in the Na+-Translocating NADH-Ubiquinone Oxidoreductase from Vibrio cholerae

IF 2.9 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Moe Ishikawa-Fukuda, Jun-ichi Kishikawa, Takahiro Masuya, Takeshi Ito, Nicole L. Butler, Danielle McFee, Takayuki Kato, Blanca Barquera, Hideto Miyoshi and Masatoshi Murai*, 
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Abstract

Na+-translocating NADH-ubiquinone oxidoreductase (Na+-NQR) is a unique redox-driven Na+-pump. Since this enzyme is exclusively found in prokaryotes, including the human pathogens Vibrio cholerae and Neisseria gonorrhoeae, it is a promising target for highly selective antibiotics. Korormicin A, a natural product, and a specific and potent inhibitor of V. cholerae Na+-NQR, may become a lead compound for the relevant drug design. We previously showed that the G141A mutation in the NqrB subunit (NqrB-G141A) confers moderate resistance to korormicin A (about 100-fold). However, the efficiency of photoaffinity labeling of the mutant enzyme by a photoreactive korormicin derivative was the same as in the wild-type enzyme. Because of these apparently conflicting results, the molecular mechanism underlying the korormicin A-resistance remains elusive. In the present study, we determined the cryo-EM structure of the V. cholerae NqrB-G141A mutant in the presence of bound korormicin A, and compared it to the corresponding structure from the wild-type enzyme. The toxophoric moiety of korormicin A binds to the mutant enzyme similarly to how it binds to the wild type. However, the added bulk of the alanine-141 excludes the alkyl side chain from the binding cavity, resulting in a decrease in the binding affinity. In fact, isothermal titration calorimetry revealed that the binding affinity of korormicin to the NqrB-G141A mutant is significantly weaker compared to the wild-type. Altogether, we conclude that the inhibitory potency of korormicin A is weaker in the NqrB-G141A mutant due to the decrease in its binding affinity to the altered binding cavity.

Abstract Image

霍乱弧菌Na+易位nadh -泛醌氧化还原酶抑制剂耐药机制的结构分析
Na+易位nadh -泛醌氧化还原酶(Na+-NQR)是一种独特的氧化还原驱动的Na+泵。由于这种酶只存在于原核生物中,包括人类病原体霍乱弧菌和淋病奈瑟菌,因此它是高度选择性抗生素的一个有希望的靶点。Korormicin A是一种天然产物,是霍乱弧菌Na+-NQR的特异性有效抑制剂,可能成为相关药物设计的先导化合物。我们之前的研究表明,NqrB亚基的G141A突变(NqrB-G141A)对korormicin A具有中等耐药性(约100倍)。然而,用光反应性korormicin衍生物对突变酶进行光亲和标记的效率与野生型酶相同。由于这些明显相互矛盾的结果,korormicin a耐药的分子机制仍然难以捉摸。在本研究中,我们测定了结合korormicin A存在的霍乱弧菌NqrB-G141A突变体的低温电镜结构,并将其与野生型酶的相应结构进行了比较。korormicin A的弓形虫部分与突变酶结合的方式与野生型相似。然而,增加的丙氨酸-141的体积将烷基侧链排除在结合腔之外,导致结合亲和力降低。事实上,等温滴定量热法显示,korormicin与NqrB-G141A突变体的结合亲和力明显弱于野生型。总之,我们得出结论,korormicin A在NqrB-G141A突变体中的抑制效力较弱,这是由于其与改变的结合腔的结合亲和力降低。
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来源期刊
Biochemistry Biochemistry
Biochemistry Biochemistry 生物-生化与分子生物学
CiteScore
5.50
自引率
3.40%
发文量
336
审稿时长
1-2 weeks
期刊介绍: Biochemistry provides an international forum for publishing exceptional, rigorous, high-impact research across all of biological chemistry. This broad scope includes studies on the chemical, physical, mechanistic, and/or structural basis of biological or cell function, and encompasses the fields of chemical biology, synthetic biology, disease biology, cell biology, nucleic acid biology, neuroscience, structural biology, and biophysics. In addition to traditional Research Articles, Biochemistry also publishes Communications, Viewpoints, and Perspectives, as well as From the Bench articles that report new methods of particular interest to the biological chemistry community.
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