Muraymycins, novel peptidoglycan biosynthesis inhibitors: synthesis and SAR of their analogues
摘要:
A Series Of Muraymycin analogues was synthesized. These analogues showed excellent antimicrobial activity against grain-positive organisins. These analogues also showed excellent inhibitory activity against the target peptidoglycan biosynthesis enzyme MraY, the cell membrane associated transglycosylase responsible for the formation of Lipid II. (C) 2003 Elsevier Ltd. All rights reserved.
Muraymycins, novel peptidoglycan biosynthesis inhibitors: synthesis and SAR of their analogues
摘要:
A Series Of Muraymycin analogues was synthesized. These analogues showed excellent antimicrobial activity against grain-positive organisins. These analogues also showed excellent inhibitory activity against the target peptidoglycan biosynthesis enzyme MraY, the cell membrane associated transglycosylase responsible for the formation of Lipid II. (C) 2003 Elsevier Ltd. All rights reserved.
The invention provides compounds of the Formula 1
1
wherein the definitions of m, n, R
1
, R
2
, R
3
, R
4
, R
5
, R
6
, R
7
, R
8
, R
9
, R
10
, R
11
, R
12
and R
13
are in the specification. These compounds are useful as antibacterial agents.
[EN] ANTIBIOTIC AA 896 ANALOGS<br/>[FR] ANTIBIOTIQUE A BASE D'ANALOGUES DE AA 896
申请人:AMERICAN CYANAMID CO
公开号:WO2002086139A1
公开(公告)日:2002-10-31
The invention provides compounds of the Formula 1 (I); wherein the definitions of m, n, R?1, R2, R3, R4, R5, R6 R7, R8, R9, R10, R11, R12 and R13¿ are in the specification. These compounds are useful as antibacterial agents.
Muraymycins, novel peptidoglycan biosynthesis inhibitors: synthesis and SAR of their analogues
作者:Ayako Yamashita、Emily Norton、Peter J Petersen、Beth A Rasmussen、Guy Singh、Youjin Yang、Tarek S Mansour、Douglas M Ho
DOI:10.1016/s0960-894x(03)00671-1
日期:2003.10
A Series Of Muraymycin analogues was synthesized. These analogues showed excellent antimicrobial activity against grain-positive organisins. These analogues also showed excellent inhibitory activity against the target peptidoglycan biosynthesis enzyme MraY, the cell membrane associated transglycosylase responsible for the formation of Lipid II. (C) 2003 Elsevier Ltd. All rights reserved.