Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333, CC, Leiden, The Netherlands.
Division of Paediatric Infectious Diseases, Dr. von Hauner Children's Hospital, Ludwig-Maximilians-University, Munich, Germany.
Chemistry. 2018 Mar 15;24(16):4014-4018. doi: 10.1002/chem.201800153. Epub 2018 Feb 19.
Teichoic acids (TAs) are key components of the Gram-positive bacterial cell wall that are composed of alditol phosphate repeating units, decorated with alanine or carbohydrate appendages. Because of their microhetereogeneity, pure well-defined TAs for biological or immunological evaluation cannot be obtained from natural sources. We present here a streamlined automated solid-phase synthesis approach for the rapid generation of well-defined glycosylated, glycerol-based TA oligomers. Building on the use of a "universal" linker system and fluorous tag purification strategy, a library of glycerolphosphate pentadecamers, decorated with various carbohydrate appendages, is generated. These are used to create a structurally diverse TA-microarray, which is used to reveal, for the first time, the binding preferences of anti-LTA (lipoteichoic acids) antibodies at the molecular level.
磷壁酸(TAs)是革兰氏阳性细菌细胞壁的关键组成部分,由糖醇磷酸重复单元组成,通过丙氨酸或碳水化合物侧链进行修饰。由于其微观异质性,无法从天然来源获得用于生物学或免疫学评估的纯、明确的 TAs。我们在此介绍了一种简化的自动化固相合成方法,用于快速生成明确的糖基化、基于甘油的 TA 低聚物。基于“通用”连接子系统和氟标记纯化策略的使用,生成了带有各种碳水化合物侧链的甘油磷酸十五聚体文库。这些被用于创建具有结构多样性的 TA 微阵列,该阵列首次用于揭示抗 LTA(脂磷壁酸)抗体在分子水平上的结合偏好。