Uttenweiler-Joseph S, Moniatte M, Lambert J, Van Dorsselaer A, Bulet P
CNRS, Unité Propre de Recherche 9022, Institut de Biologie Moléculaire et Cellulaire, Strasbourg, France.
Anal Biochem. 1997 May 1;247(2):366-75. doi: 10.1006/abio.1997.2083.
In a previous study, electrospray ionization mass spectrometry was used to analyze the structure of the O-glycopeptide diptericin, an antibacterial peptide from the fleshfly Phormia terranovae. Several glycoforms of diptericin differing in the length of their oligosaccharide chains were present at the final stage of purification. In order to determine the origin of this glycan heterogeneity, we analyzed by matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) the relative abundance of the different diptericin glycoforms in fractions obtained after each purification step, and directly in the hemolymph and in the fat body which produces diptericin. MALDI-MS clearly shows that the purification procedure had no effect on the O-linked oligosaccharide chains of diptericin, suggesting that diptericin is synthesized as a family of heterogeneous glycopeptides. In addition, in these experiments, differential mapping by MALDI-MS of the hemolymph and fat body tissue from bacteria-challenged and naive larvae allowed us to detect induced or repressed molecules which may be involved in the immune response of P. terranovae.
在之前的一项研究中,电喷雾电离质谱法被用于分析地种蝇(Phormia terranovae)的抗菌肽O-糖肽双翅菌素的结构。在纯化的最后阶段,存在几种寡糖链长度不同的双翅菌素糖型。为了确定这种聚糖异质性的来源,我们通过基质辅助激光解吸/电离质谱法(MALDI-MS)分析了每个纯化步骤后获得的级分中不同双翅菌素糖型的相对丰度,并直接分析了产生双翅菌素的血淋巴和脂肪体中的相对丰度。MALDI-MS清楚地表明,纯化过程对双翅菌素的O-连接寡糖链没有影响,这表明双翅菌素是以一组异质糖肽的形式合成的。此外,在这些实验中,通过MALDI-MS对受细菌攻击的幼虫和未受攻击的幼虫的血淋巴和脂肪体组织进行差异图谱分析,使我们能够检测到可能参与地种蝇免疫反应的诱导或抑制分子。