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Binding of aminoglycoside antibiotics to helix 69 of 23S rRNA

机译:氨基糖苷类抗生素与23S rRNA的螺旋69的结合

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Aminoglycosides antibiotics negate dissociation and recycling of the bacterial ribosome's subunits by binding to Helix 69 (H69) of 23S rRNA. The differential binding of various aminoglycosides to the chemically synthesized terminal domains of the Escherichia coli and human H69 has been characterized using spectroscopy, calorimetry and NMR. The unmodified E. coli H69 hairpin exhibited a significantly higher affinity for neomycin B and tobramycin than for paromomycin (K(d)s = 0.3 +/- 0.1, 0.2 +/- 0.2 and 5.4 +/- 1.1 mu M, respectively). The binding of streptomycin was too weak to assess. In contrast to the E. coli H69, the human 28S rRNA H69 had a considerable decrease in affinity for the antibiotics, an important validation of the bacterial target. The three conserved pseudouridine modifications (Psi 1911, Psi 1915, Psi 1917) occurring in the loop of the E. coli H69 affected the dissociation constant, but not the stoichiometry for the binding of paromomycin (K-d = 2.6 +/- 0.1 mu M). G1906 and G1921, observed by NMR spectrometry, figured predominantly in the aminoglycoside binding to H69. The higher affinity of the E. coli H69 for neomycin B and tobramycin, as compared to paromomycin and streptomycin, indicates differences in the efficacy of the aminoglycosides.
机译:氨基糖苷类抗生素通过与23S rRNA的Helix 69(H69)结合,消除了细菌核糖体亚基的解离和再循环。使用光谱学,量热法和NMR已经表征了各种氨基糖苷与大肠杆菌和人H69的化学合成的末端结构域的差异结合。未修饰的大肠杆菌H69发夹对新霉素B和妥布霉素的亲和力明显高于对巴龙霉素的亲和力(K(d)s分别为0.3 +/- 0.1、0.2 +/- 0.2和5.4 +/- 1.1μM)。链霉素的结合太弱,无法评估。与大肠杆菌H69相比,人28S rRNA H69对抗生素的亲和力大大降低,这是对细菌靶标的重要验证。在大肠杆菌H69环中发生的三个保守的假尿苷修饰(Psi 1911,Psi 1915,Psi 1917)影响解离常数,但不影响巴龙霉素结合的化学计量(Kd = 2.6 +/- 0.1μM) 。通过NMR光谱法观察到的G1906和G1921主要表现在与H69结合的氨基糖苷上。与巴龙霉素和链霉素相比,大肠杆菌H69对新霉素B和妥布霉素的亲和力更高,表明氨基糖苷类药物的功效存在差异。

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