Wilson J M, Oliva B, Cassels R, O'Hanlon P J, Chopra I
SmithKline Beecham Pharmaceuticals, Brockham Park Research Centre, Betchworth, Surrey, United Kingdom.
Antimicrob Agents Chemother. 1995 Sep;39(9):1925-33. doi: 10.1128/AAC.39.9.1925.
The biological properties of SB 205952, a nitrofuryl oxazole derivative of monic acid, differ from those of the closely related antibacterial agent mupirocin. Compared with mupirocin, SB 205952 has increased antimicrobial potency, an extended spectrum including mupirocin-resistant staphylococci, and rapid bactericidal activity. SB 205952, like mupirocin, is a potent inhibitor of bacterial isoleucyl-tRNA synthetase (IRS) in mupirocin-susceptible organisms but does not inhibit IRS from mupirocin-resistant staphylococci, indicating that SB 205952 has more than one mechanism of action. SB 205952 rapidly inhibits protein, RNA, and DNA syntheses in mupirocin-susceptible and mupirocin-resistant staphylococci. In each case, the effect on RNA synthesis is relaxed by treatment with chloramphenicol, indicating that inhibition of RNA synthesis is probably a secondary consequence of stringent control. It is proposed that SB 205952 possesses one or more mechanisms of action in addition to IRS inhibition, probably mediated by its nitrofuryl component.
莫能酸的硝基呋喃基恶唑衍生物SB 205952的生物学特性与密切相关的抗菌剂莫匹罗星不同。与莫匹罗星相比,SB 205952的抗菌效力增强,抗菌谱扩大,包括对莫匹罗星耐药的葡萄球菌,且具有快速杀菌活性。与莫匹罗星一样,SB 205952是莫匹罗星敏感菌中细菌异亮氨酰 - tRNA合成酶(IRS)的有效抑制剂,但不抑制莫匹罗星耐药葡萄球菌的IRS,这表明SB 205952具有多种作用机制。SB 205952能快速抑制莫匹罗星敏感和耐药葡萄球菌中的蛋白质、RNA和DNA合成。在每种情况下,氯霉素处理可缓解对RNA合成的影响,这表明RNA合成的抑制可能是严格控制的次要结果。有人提出,除了抑制IRS外,SB 205952还具有一种或多种作用机制,可能由其硝基呋喃成分介导。