Griffey R H, Hofstadler S A, Sannes-Lowery K A, Ecker D J, Crooke S T
Ibis Therapeutics, a Division of Isis Pharmaceuticals, 2292 Faraday Avenue, Carlsbad, CA 92008, USA.
Proc Natl Acad Sci U S A. 1999 Aug 31;96(18):10129-33. doi: 10.1073/pnas.96.18.10129.
We have developed methods for studying the interactions between small molecules and RNA and have applied them to characterize the binding of three classes of aminoglycoside antibiotics to ribosomal RNA subdomains. High-resolution MS was used to quantitatively identify the noncovalent binding interactions between mixtures of aminoglycosides and multiple RNA targets simultaneously. Signal overlap among RNA targets was avoided by the addition of neutral mass tags that direct each RNA target to a unique region of the spectrum. In addition to determining binding affinities, the locations of the binding sites on the RNAs were identified from a protection pattern generated by fragmenting the aminoglycoside/RNA complex. Specific complexes were observed for the prokaryotic rRNA A-site subdomain with ribostamycin, paromomycin, and lividomycin, whereas apramycin preferentially formed a complex with the eukaryotic subdomain. We show that differences in binding between paromomycin and ribostamycin can be probed by using an MS-MS protection assay. We have introduced specific base substitutions in the RNA models and have measured their impact on binding affinity and selectivity. The binding of apramycin to the prokaryotic subdomain strongly depends on the identity of position 1408, as evidenced by the selective increase in affinity for an A1408G mutant. An A1409-G1491 mismatch pair in the prokaryotic subdomain enhanced the binding of tobramycin and bekanamycin. These observations demonstrate the power of MS-based methods to provide molecular insights into small molecule/RNA interactions useful in the design of selective new antimicrobial drugs.
我们已经开发出研究小分子与RNA相互作用的方法,并将其应用于表征三类氨基糖苷类抗生素与核糖体RNA亚结构域的结合。高分辨率质谱用于同时定量鉴定氨基糖苷混合物与多个RNA靶标的非共价结合相互作用。通过添加中性质量标签将每个RNA靶标引导至光谱的唯一区域,避免了RNA靶标之间的信号重叠。除了确定结合亲和力外,还从氨基糖苷/RNA复合物片段化产生的保护模式中确定RNA上结合位点的位置。观察到原核rRNA A位点亚结构域与核糖霉素、巴龙霉素和青紫霉素形成特异性复合物,而阿泊拉霉素优先与真核亚结构域形成复合物。我们表明,使用质谱-质谱保护分析可以探究巴龙霉素和核糖霉素之间结合的差异。我们在RNA模型中引入了特定的碱基替换,并测量了它们对结合亲和力和选择性的影响。阿泊拉霉素与原核亚结构域的结合强烈依赖于位置1408的身份,对A1408G突变体亲和力的选择性增加证明了这一点。原核亚结构域中的A1409 - G1491错配增强了妥布霉素和贝卡霉素的结合。这些观察结果证明了基于质谱的方法在提供小分子/RNA相互作用的分子见解方面的能力,这对设计选择性新型抗菌药物很有用。