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Glycine origin of the methyl substituent on C7′-N of octodiose for the biosynthesis of apramycin 被引量:3
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作者 XU Mingxuan ZHU Yinming +9 位作者 Jin Zhikun WU Huiyuan LI Xiangfeng YANG Yunliu JIAO Ruisheng JIANG Weihong WU Houming TIAN Wei BAI Xiufeng ZHAO Guoping 《Science China(Life Sciences)》 SCIE CAS 2006年第4期362-369,共8页
Apramycin is unique in the aminoglycoside family due to its octodiose moiety. However, either the biosynthesis process or the precursors involved are largely unknown. Addition of glycine, as well as serine or threonin... Apramycin is unique in the aminoglycoside family due to its octodiose moiety. However, either the biosynthesis process or the precursors involved are largely unknown. Addition of glycine, as well as serine or threonine, to the Streptomyces tenebrabrius UD2 fermentation medium substantially increases the production of apramycin with little effect on the growth of mycelia, indicating that glycine and/or serine might be involved in the biosynthesis of apramycin. The 13C-NMR analysis of [2-13C] glycine-fed (25% enrichment) apramycin showed that glycine specifically and efficiently incorporated into the only N-CH3 substituent of apramycin on the C7′ of the octodiose moiety. We noticed that the in vivo concentration of S-adenosyl methionine increased in parallel with the addition of glycine, while the addition of methione in the fermentation medium significantly decreased the productivity of apra-mycin. Therefore, the methyl donor function of glycine is proposed to be involved in the methionine cycle but methionine itself was proposed to inhibit the methylation and methyl transfer processes as previously reported for the case of rapamycin. The 15N NMR spectra of [2-13C,15N]serine labeled apramycin indicated that serine may also act as a limiting precursor contributing to the ―NH2 substituents of apramycin. 展开更多
关键词 Streptomyces tenebrabrius apramycin octodiose 13C-nMR [2-13C]glycine 15n-nMR [2-13C 15n]serine.
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N-花生四烯甘氨酸(NAGly)缓解七氟烷诱导的发育期大鼠原代海马神经元神经毒性
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作者 陆一鸣 莫怀忠 +3 位作者 董丽 陈伟 何婧 章俊 《中国卫生工程学》 CAS 2013年第6期445-448,共4页
目的探讨N-花生四烯酰乙醇胺(N-arachidonoylethanolamine,AEA)类似物N-花生四烯甘氨酸(Narachidonoyl glycine,NAGly)对发育期大鼠原代海马神经元七氟烷暴露诱导的神经毒性的保护作用。方法体外培养7 d的原代海马神经元经七氟烷暴露,... 目的探讨N-花生四烯酰乙醇胺(N-arachidonoylethanolamine,AEA)类似物N-花生四烯甘氨酸(Narachidonoyl glycine,NAGly)对发育期大鼠原代海马神经元七氟烷暴露诱导的神经毒性的保护作用。方法体外培养7 d的原代海马神经元经七氟烷暴露,同时给予NAGly处理,采用TUNEL染色和流式检测细胞凋亡。Western blot检测凋亡蛋白表达。结果 NAGly促进细胞活性,抑制了七氟烷诱导的凋亡。NAGly改善了七氟烷暴露诱导的ERK1/2活性抑制。MEK抑制剂能够破坏NAGly的神经保护作用。结论 AEA类似物NAGly能够保护发育期海马神经元改善七氟烷诱导的神经毒性,其可能机制是通过上调MEK/ERK1/2 MAPK信号通路实现的。 展开更多
关键词 n-花生四烯酰乙醇胺 n-花生四烯甘氨酸 七氟烷 原代海马神经元 神经毒性
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