首页> 外文期刊>Microbiology >The molecular biology of mycobacterial trehalose in the quest for advanced tuberculosis therapies
【24h】

The molecular biology of mycobacterial trehalose in the quest for advanced tuberculosis therapies

机译:治愈性结核病治疗中的分枝杆菌海藻糖的分子生物学

获取原文
           

摘要

Trehalose is a natural glucose disaccharide identified in the 19th century in fungi and insect cocoons, and later across the three domains of life. In members of the genus Mycobacterium, which includes the tuberculosis (TB) pathogen and over 160 species of nontuberculous mycobacteria (NTM), many of which are opportunistic pathogens, trehalose has been an important focus of research over the last 60 years. It is a crucial player in the assembly and architecture of the remarkable mycobacterial cell envelope as an element of unique highly antigenic glycolipids, namely trehalose dimycolate (‘cord factor’). Free trehalose has been detected in the mycobacterial cytoplasm and occasionally in oligosaccharides with unknown function. TB and NTM infection statistics and death toll, the decline in immune responses in the aging population, human immunodeficiency virus/AIDS or other debilitating conditions, and the proliferation of strains with different levels of resistance to the dated drugs in use, all merge into a serious public-health threat urging more effective vaccines, efficient diagnostic tools and new drugs. This review deals with the latest findings on mycobacterial trehalose biosynthesis, catabolism, processing and recycling, as well with the ongoing quest for novel trehalose-related mechanisms to be targeted by novel TB therapeutics. In this context, the drug-discovery pipeline has recently included new lead compounds directed toward trehalose-related targets highlighting the potential of these pathways to stem the tide of rising drug resistance.
机译:海藻糖是在19世纪在真菌和昆虫茧中确定的天然葡萄糖二糖,后来横跨生命的三个领域。在分枝杆菌属的成员中,其中包括结核病(TB)病原体和超过160种无萎缩的分枝杆菌(NTM),其中许多是机会性病原体,海藻糖是过去60年来研究的重要焦点。它是一个关键的球员,在卓越的分枝杆菌细胞包膜中作为独特的高度抗原糖脂的元素,即海藻糖二氯化物('脐带因子')。在分枝杆菌细胞质中检测到免费海藻糖,偶尔在具有未知功能的寡糖中。 TB和NTM感染统计和死亡人数,免疫应对衰老的衰老,人类免疫缺陷病毒/艾滋病或其他衰弱条件的下降,以及不同水平的抗性水平的菌株的使用,所有人都合并到a中严重的公共卫生威胁促使更有效的疫苗,高效的诊断工具和新药。本综述涉及分枝杆菌海藻糖生物合成,分解代谢,加工和回收的最新发现,以及持续寻求新的海藻糖相关机制,以通过新的TB治疗方法靶向。在这种情况下,药物发现管道最近包括朝向海藻糖相关靶标的新铅化合物突出了这些途径的潜力,以抗抗耐药性上升的潮流。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号