Institute of Analytical Chemistry of the ASCR, Brno, Czech Republic.
Proteomics. 2012 Oct;12(19-20):2927-36. doi: 10.1002/pmic.201200136. Epub 2012 Sep 20.
In recent years, characterization and identification of microorganisms has become very important in different fields of human activity. Conventional laboratory methods are time consuming, laborious, and they may provide both false positive or negative results, especially for closely related microorganisms. On that account, new methods for fast and reliable microbial characterization are of great interest. In particular, capillary electrophoretic techniques have a great potential for characterization of microorganisms due to their unique surface properties. Cell surface proteins play a key role in this respect. Since CIEF represents one of the most efficient techniques for protein separation, it was consequently applied to the analysis of microbial cells. This review describes, after a brief introduction to CIEF of proteins, recent developments in CIEF of diverse microorganisms (viruses, bacteria, yeasts, and fungi). Possible application schemes in human and veterinary medicine as well as in plant protection and in biosecurity are outlined.
近年来,微生物的特征描述和鉴定在人类活动的不同领域变得非常重要。传统的实验室方法既耗时又费力,而且可能会产生假阳性或假阴性结果,尤其是对于密切相关的微生物。因此,快速可靠的微生物特征描述新方法具有重要意义。特别是,由于其独特的表面特性,毛细管电泳技术在微生物特征描述方面具有巨大的潜力。细胞表面蛋白在这方面起着关键作用。由于 CIEF 是蛋白质分离最有效的技术之一,因此它被应用于微生物细胞的分析。在简要介绍蛋白质的 CIEF 之后,本文综述了不同微生物(病毒、细菌、酵母和真菌)的 CIEF 的最新进展。概述了在人类和兽医医学、植物保护和生物安全方面的可能应用方案。