School of Pharmaceutical Science, Jiangnan University, Wuxi, 214122, People's Republic of China.
Appl Microbiol Biotechnol. 2013 Aug;97(15):6603-11. doi: 10.1007/s00253-013-4932-8. Epub 2013 Jun 26.
Nitrilase is one of the most important members in the nitrilase superfamily and it is widely used for bioproduction of commodity chemicals and pharmaceutical intermediates as well as bioremediation of nitrile-contaminated wastes. However, its application was hindered by several limitations. Searching for new nitrilases and improving their application performances are the driving force for researchers. Genetic data resources in various databases are quite rich in post-genomic era. Besides, more than 99 % of microbes in the environment are unculturable. Metagenomic technology and genome mining are thus becoming burgeoning areas and provide unprecedented opportunities for searching more useful novel nitrilases due to the abundance of already existing but unexplored gene resources, namely uncharacterized genome information in the database and unculturable microbes in the natural environment. These techniques seem to be innovative and highly efficient. This study reviews the current status and future directions of metagenomics and genome mining in nitrilase exploration. Moreover, it discussed their utilization in coping with the challenges for nitrilase application. In the next several years, with the rapid development of nitrile biocatalysis, these two techniques would be bound to attract increasing attentions and even become a dominant trend for finding more novel nitrilases. Also, this review would provide guidance for exploitation of other commercially important enzymes.
腈酶是腈酶超家族中最重要的成员之一,广泛应用于商品化学品和医药中间体的生物生产以及腈污染废物的生物修复。然而,其应用受到了一些限制。寻找新的腈酶并提高其应用性能是研究人员的动力。在后基因组时代,各种数据库中的遗传数据资源非常丰富。此外,环境中超过 99%的微生物是不可培养的。因此,宏基因组技术和基因组挖掘正在成为新兴领域,由于已经存在但尚未开发的基因资源(即数据库中未表征的基因组信息和自然环境中不可培养的微生物)非常丰富,为寻找更有用的新型腈酶提供了前所未有的机会。这些技术似乎具有创新性和高效性。本研究综述了宏基因组学和基因组挖掘在腈酶探索中的现状和未来方向。此外,还讨论了它们在应对腈酶应用挑战方面的利用。在未来几年,随着腈生物催化的快速发展,这两种技术必将引起越来越多的关注,甚至成为寻找更多新型腈酶的主导趋势。此外,本综述将为其他商业上重要的酶的开发提供指导。