Kettenring J, Colombo L, Ferrari P, Tavecchia P, Nebuloni M, Vékey K, Gallo G G, Selva E
MMDRI, Lepetit Research Center, Gerenzano, Varese, Italy.
J Antibiot (Tokyo). 1991 Jul;44(7):702-15. doi: 10.7164/antibiotics.44.702.
GE2270 A, produced by Planobispora rosea ATCC 53773, inhibits Gram-positive bacteria and anaerobes by acting on the bacterial protein synthesis. The structure has been determined by physico-chemical methods applied to the intact molecule and to the main hydrolysis products. Characterization by UV, IR, NMR (double quantum filter COSY), acid-base ionization, elemental analysis and FAB-MS indicated that GE2270 A is a highly modified peptide having MW 1,289 and formula C56H55N15O10S6, and a weak basic function, and that it belongs to the thiazolyl peptide group of antibiotics. Acid hydrolysis yielded a main product (MW 634), responsible for the chromophoric absorption, and a number of hydrolyzed products of lower MW. 13C NMR inverse techniques and MS studies (EI, positive ion chemical ionization, and collision induced dissociation FAB-MS-MS experiments) on GE2270 A, the chromophoric compound, and the other hydrolysis products led to the complete identification of the various amino acid residues and their sequence. Two out of the six chiral centers have been determined. The structure is thought to originate from modification of a chain of 14 amino acids in a process which creates 6 thiazole rings and one pyridine. The modification process also closes the linear polypeptide to form a cyclic part with an attached side-chain. GE2270 A plausibly has a similar biosynthetic origin to that of other thiazolyl peptide antibiotics such as nosiheptide and micrococcin.
由玫瑰平双孢菌ATCC 53773产生的GE2270 A,通过作用于细菌蛋白质合成来抑制革兰氏阳性菌和厌氧菌。已通过应用于完整分子及其主要水解产物的物理化学方法确定了其结构。通过紫外、红外、核磁共振(双量子滤波COSY)、酸碱电离、元素分析和快原子轰击质谱表征表明,GE2270 A是一种高度修饰的肽,分子量为1289,分子式为C56H55N15O10S6,具有弱碱性功能,属于噻唑基肽类抗生素。酸水解产生一种主要产物(分子量634),它负责发色吸收,以及一些较低分子量的水解产物。对GE2270 A、发色化合物和其他水解产物进行的13C核磁共振反转技术和质谱研究(电子轰击电离、正离子化学电离和碰撞诱导解离快原子轰击串联质谱实验)导致对各种氨基酸残基及其序列的完全鉴定。六个手性中心中的两个已被确定。该结构被认为起源于一个由14个氨基酸组成的链的修饰过程,该过程产生6个噻唑环和1个吡啶环。该修饰过程还使线性多肽闭合形成一个带有连接侧链的环状部分。GE2270 A可能与其他噻唑基肽类抗生素如诺西肽和微球菌素具有相似的生物合成起源。