Pohn Brigitte, Gerlach Jochen, Scheideler Marcel, Katz Hermann, Uray Martina, Bischof Horst, Klimant Ingo, Schwab Helmut
Applied Biocatalysis Research Centre, Petersgasse 14, 8010 Graz, Austria.
J Biotechnol. 2007 Mar 30;129(1):162-70. doi: 10.1016/j.jbiotec.2006.11.002. Epub 2006 Nov 16.
Enzymes are becoming increasingly important tools for synthesizing and modifying fine and bulk chemicals. The availability of biocatalysts which fulfil the requirements of industrial processes is often limited. Recruiting suited enzymes from natural (e.g. metagenomes) and artificial (e.g. directed evolution) biodiversity is based on screening libraries of microbial clones expressing enzyme variants. However, exploring the complex diversity of such libraries needs efficient screening methods. Overcoming the "screening bottleneck" requires rapid high throughput technology allowing the analysis of a large diversity of different enzymes and applying different screening conditions. Facing these facts an efficient and cost effective method for high throughput screening of large enzyme libraries at the colony level was developed. Therefore, ordered high density micro-colony arrays were combined with optical sensor technology and automated image analysis. The system generally allows the simultaneous monitoring of enzyme activities reflected by up to 7000 micro-colonies spotted on a filter in the size of a micro-titer plate. A developed replica option also allows the analysis of clones under varying external conditions. The method was verified by a model screening using esterases and was proved to provide reliable enzyme activity measurements within single micro-colonies allowing the discrimination of activity differences in the range of 10-20%.
酶正日益成为合成和修饰精细及大宗化学品的重要工具。符合工业生产流程要求的生物催化剂的可得性往往有限。从天然(如宏基因组)和人工(如定向进化)生物多样性中筛选合适的酶,是基于对表达酶变体的微生物克隆文库进行筛选。然而,探索此类文库的复杂多样性需要高效的筛选方法。克服“筛选瓶颈”需要快速的高通量技术,以便能够分析大量不同的酶并应用不同的筛选条件。基于这些事实,开发了一种在菌落水平上对大型酶文库进行高通量筛选的高效且经济的方法。因此,将有序高密度微菌落阵列与光学传感器技术和自动图像分析相结合。该系统通常能够同时监测酶活性,这些活性由点样在微孔板大小滤膜上的多达7000个微菌落反映出来。所开发的复制选项还允许在不同外部条件下对克隆进行分析。该方法通过使用酯酶的模型筛选得到验证,并被证明能够在单个微菌落内提供可靠的酶活性测量结果,从而能够区分10%至20%范围内的活性差异。