Vary Patricia S, Biedendieck Rebekka, Fuerch Tobias, Meinhardt Friedhelm, Rohde Manfred, Deckwer Wolf-Dieter, Jahn Dieter
Department of Biological Sciences, Northern Illinois University, DeKalb, IL 60115, USA.
Appl Microbiol Biotechnol. 2007 Oct;76(5):957-67. doi: 10.1007/s00253-007-1089-3. Epub 2007 Jul 26.
Bacillus megaterium has been industrially employed for more than 50 years, as it possesses some very useful and unusual enzymes and a high capacity for the production of exoenzymes. It is also a desirable cloning host for the production of intact proteins, as it does not possess external alkaline proteases and can stably maintain a variety of plasmid vectors. Genetic tools for this species include transducing phages and several hundred mutants covering the processes of biosynthesis, catabolism, division, sporulation, germination, antibiotic resistance, and recombination. The seven plasmids of B. megaterium strain QM B1551 contain several unusual metabolic genes that may be useful in bioremediation. Recently, several recombinant shuttle vectors carrying different strong inducible promoters and various combinations of affinity tags for simple protein purification have been constructed. Leader sequences-mediated export of affinity-tagged proteins into the growth medium was made possible. These plasmids are commercially available. For a broader application of B. megaterium in industry, sporulation and protease-deficient as well as UV-sensitive mutants were constructed. The genome sequence of two different strains, plasmidless DSM319 and QM B1551 carrying seven natural plasmids, is now available. These sequences allow for a systems biotechnology optimization of the production host B. megaterium. Altogether, a "toolbox" of hundreds of genetically characterized strains, genetic methods, vectors, hosts, and genomic sequences make B. megaterium an ideal organism for industrial, environmental, and experimental applications.
巨大芽孢杆菌已在工业上应用了50多年,因为它拥有一些非常有用且独特的酶,并且具有很高的胞外酶生产能力。它也是生产完整蛋白质的理想克隆宿主,因为它不具有外碱性蛋白酶,并且能够稳定维持多种质粒载体。该物种的遗传工具包括转导噬菌体和数百个覆盖生物合成、分解代谢、分裂、孢子形成、萌发、抗生素抗性和重组过程的突变体。巨大芽孢杆菌菌株QM B1551的七个质粒包含几个可能在生物修复中有用的不寻常代谢基因。最近,构建了几种携带不同强诱导型启动子和用于简单蛋白质纯化的亲和标签各种组合的重组穿梭载体。实现了前导序列介导的亲和标签蛋白向生长培养基中的输出。这些质粒可商购获得。为了使巨大芽孢杆菌在工业上有更广泛的应用,构建了孢子形成缺陷型、蛋白酶缺陷型以及对紫外线敏感的突变体。现在已有两种不同菌株的基因组序列,即无质粒的DSM319和携带七个天然质粒的QM B1551。这些序列有助于对生产宿主巨大芽孢杆菌进行系统生物技术优化。总之,一个由数百个遗传特征明确的菌株、遗传方法、载体、宿主和基因组序列组成的“工具箱”使巨大芽孢杆菌成为工业、环境和实验应用的理想生物。