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Ribosomal RNA is the target for oxazolidinones, a novel class of translational inhibitors.

机译:核糖体RNA是恶唑烷酮(一种新型的翻译抑制剂)的靶标。

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Oxazolidinones are antibacterial agents that act primarily against gram-positive bacteria by inhibiting protein synthesis. The binding of oxazolidinones to 70S ribosomes from Escherichia coli was studied by both UV-induced cross-linking using an azido derivative of oxazolidinone and chemical footprinting using dimethyl sulphate. Oxazolidinone binding sites were found on both 30S and 50S subunits, rRNA being the only target. On 16S rRNA, an oxazolidinone footprint was found at A864 in the central domain. 23S rRNA residues involved in oxazolidinone binding were U2113, A2114, U2118, A2119, and C2153, all in domain V. This region is close to the binding site of protein L1 and of the 3' end of tRNA in the E site. The mechanism of action of oxazolidinones in vitro was examined in a purified translation system from E. coli using natural mRNA. The rate of elongation reaction of translation was decreased, most probably because of an inhibition of tRNA translocation, and the length of nascent peptide chains was strongly reduced. Both binding sites and mode of action of oxazolidinones are unique among the antibiotics known to act on the ribosome.
机译:恶唑烷酮是主要通过抑制蛋白质合成而对革兰氏阳性细菌起作用的抗菌剂。通过使用恶唑烷酮的叠氮基衍生物的紫外诱导交联和使用硫酸二甲酯的化学足迹研究了恶唑烷酮与大肠杆菌的70S核糖体的结合。在30S和50S亚基上都发现了恶唑烷酮结合位点,rRNA是唯一的靶标。在16S rRNA上,在中央结构域的A864处发现了恶唑烷酮足迹。涉及恶唑烷酮结合的23S rRNA残基分别是U2113,A2114,U2118,A2119和C2153,均在域V中。该区域靠近蛋白L1的结合位点和E位点中tRNA的3'端。使用天然mRNA,在大肠杆菌纯化的翻译系统中检查了恶唑烷酮的体外作用机理。翻译的延伸反应速率降低了,这很可能是由于tRNA易位的抑制,新生肽链的长度大大降低了。在已知作用于核糖体的抗生素中,恶唑烷酮的结合位点和作用方式都是独特的。

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