Hitzeroth Gabriele, Vater Joachim, Franke Peter, Gebhardt Klaus, Fiedler Hans-Peter
Institut für Chemie, Arbeitsgruppe Biochemie und Molekulare Biologie, Technische Universität Berlin, Franklinstr. 29, D-10587 Berlin, Germany.
Rapid Commun Mass Spectrom. 2005;19(20):2935-42. doi: 10.1002/rcm.2155.
Streptocidins, a family of tyrocidine-like cyclic decapeptides, are an ideal demonstration object for the detection and in situ structure analysis of natural compounds directly in microbial cells using whole cell matrix-assisted laser desorption/ionization time-of-flight-mass spectrometry (MALDI-TOFMS), an emerging technique that can be used for rapid sensitive metabolic profiling of microorganisms. Five main members of the streptocidin family (A-E) were detected in Brevibacillus cells picked from agar plates and identified by in situ structure analysis with post-source decay MALDI-TOFMS. This efficient modern method allows the precise detection of metabolites within minutes without the need to isolate and purify the target compounds. The generated mass spectra are of similar quality to those obtained for the purified peptides. In addition, surface extracts were prepared by treating Brevibacillus cells with 70% acetonitrile in the presence of 0.1% trifluoroacetic acid and fractionated by high-resolution reversed-phase high-performance liquid chromatography (HPLC). In this way ten minor streptocidins were detected demonstrating the full biosynthetic variety of streptocidin production on the cellular level. The streptocidins differ from the well-known tyrocidines essentially in position 3 of the decapeptide chain by replacement of the aromatic amino acid (F/W) found in tyrocidines by L-leucine or L-valine.
链霉素是一类类似于短杆菌酪肽的环十肽,是利用全细胞基质辅助激光解吸/电离飞行时间质谱(MALDI-TOFMS)直接在微生物细胞中检测天然化合物并进行原位结构分析的理想示范对象,MALDI-TOFMS是一种新兴技术,可用于微生物的快速灵敏代谢谱分析。从琼脂平板上挑选的短短芽孢杆菌细胞中检测到了链霉素家族的五个主要成员(A-E),并通过源后衰变MALDI-TOFMS进行原位结构分析进行了鉴定。这种高效的现代方法能够在几分钟内精确检测代谢物,而无需分离和纯化目标化合物。所生成的质谱图与纯化肽获得的质谱图质量相似。此外,通过在0.1%三氟乙酸存在下用70%乙腈处理短短芽孢杆菌细胞制备表面提取物,并通过高分辨率反相高效液相色谱(HPLC)进行分离。通过这种方式检测到了十种次要的链霉素,证明了链霉素在细胞水平上生物合成的多样性。链霉素与著名的短杆菌酪肽的主要区别在于十肽链的第3位,酪肽中的芳香族氨基酸(F/W)被L-亮氨酸或L-缬氨酸取代。