Colatriano David, Walsh David A
Department of Biology, Concordia University;
Department of Biology, Concordia University.
J Vis Exp. 2015 Sep 15(103):52827. doi: 10.3791/52827.
Meta-omic technologies such as metagenomics, metatranscriptomics and metaproteomics can aid in the understanding of microbial community structure and metabolism. Although powerful, metagenomics alone can only elucidate functional potential. On the other hand, metaproteomics enables the description of the expressed in situ metabolism and function of a community. Here we describe a protocol for cell lysis, protein and DNA isolation, as well as peptide digestion and extraction from marine microbial cells collected on a cartridge filter unit (such as the Sterivex filter unit) and preserved in an RNA stabilization solution (like RNAlater). In mass spectrometry-based proteomics studies, the identification of peptides and proteins is performed by comparing peptide tandem mass spectra to a database of translated nucleotide sequences. Including the metagenome of a sample in the search database increases the number of peptides and proteins that can be identified from the mass spectra. Hence, in this protocol DNA is isolated from the same filter, which can be used subsequently for metagenomic analysis.
宏基因组学、宏转录组学和宏蛋白质组学等宏组学技术有助于了解微生物群落结构和代谢。尽管宏基因组学功能强大,但仅靠它只能阐明功能潜力。另一方面,宏蛋白质组学能够描述群落原位表达的代谢和功能。在此,我们描述了一种从收集在盒式过滤装置(如Sterivex过滤装置)上并保存在RNA稳定溶液(如RNAlater)中的海洋微生物细胞中进行细胞裂解、蛋白质和DNA分离,以及肽消化和提取的方案。在基于质谱的蛋白质组学研究中,通过将肽串联质谱与翻译后的核苷酸序列数据库进行比较来鉴定肽和蛋白质。在搜索数据库中纳入样本的宏基因组会增加可从质谱中鉴定出的肽和蛋白质的数量。因此,在本方案中,从同一过滤器中分离DNA,随后可用于宏基因组分析。