Zachman-Brockmeyer Trevor R, Thoden James B, Holden Hazel M
Department of Biochemistry, University of Wisconsin, Madison, Wisconsin.
Protein Sci. 2017 Sep;26(9):1886-1892. doi: 10.1002/pro.3221. Epub 2017 Jul 23.
Aminoglycoside antibiotics represent a classical group of antimicrobials first discovered in the 1940s. Due to their ototoxic and nephrotoxic side effects, they are typically only used against Gram negative bacteria which have become resistant to other therapeutics. One family of aminoglycosides includes such compounds as butirosin, ribostamycin, neomycin, and kanamycin, amongst others. The common theme in these antibiotics is that they are constructed around a chemically stable aminocyclitol unit referred to as 2-deoxystreptamine (2-DOS). Four enzymes are required for the in vivo production of 2-DOS. Here, we report the structure of RbmB from Streptomyces ribosidificus, which is a pyridoxal 5'-phosphate dependent enzyme that catalyzes two of the required steps in 2-DOS formation by functioning on distinct substrates. For this analysis, the structure of the external aldimine form of RbmB with 2-DOS was determined to 2.1 Å resolution. In addition, the structure of a similar enzyme, BtrR from Bacillus circulans, was also determined to 2.1 Å resolution in the same external aldimine form. These two structures represent the first detailed molecular descriptions of the active sites for those aminotransferases involved in 2-DOS production. Given the fact that the 2-DOS unit is widespread amongst aminoglycoside antibiotics, the data presented herein provide new molecular insight into the biosynthesis of these sugar-based drugs.
氨基糖苷类抗生素是一类经典的抗菌药物,于20世纪40年代首次被发现。由于其耳毒性和肾毒性副作用,它们通常仅用于治疗对其他疗法产生耐药性的革兰氏阴性菌。氨基糖苷类的一个家族包括诸如丁胺卡那霉素、核糖霉素、新霉素和卡那霉素等化合物。这些抗生素的共同特点是它们围绕一个化学稳定的氨基环醇单元构建,该单元称为2-脱氧链霉胺(2-DOS)。2-DOS的体内产生需要四种酶。在此,我们报道了来自核糖链霉菌的RbmB的结构,它是一种依赖于磷酸吡哆醛的酶,通过作用于不同的底物催化2-DOS形成所需的两个步骤。为了进行此分析,将RbmB与2-DOS的外部醛亚胺形式的结构解析到2.1 Å分辨率。此外,还将环状芽孢杆菌的类似酶BtrR的结构解析到相同外部醛亚胺形式的2.1 Å分辨率。这两个结构代表了参与2-DOS产生的那些转氨酶活性位点的首次详细分子描述。鉴于2-DOS单元在氨基糖苷类抗生素中广泛存在,本文提供的数据为这些基于糖的药物的生物合成提供了新的分子见解。