Departamento de Genética y Microbiología, Área de Genética, Unidad Asociada al IQFR-CSIC, Facultad de Biología, Universidad de Murcia, Murcia, Spain.
J Bacteriol. 2012 Nov;194(21):5875-85. doi: 10.1128/JB.01110-12. Epub 2012 Aug 24.
Conditional expression of a gene is a powerful tool to study its function and is typically achieved by placing the gene under the control of an inducible promoter. There is, however, a dearth of such inducible systems in Myxococcus xanthus, a well-studied prokaryotic model for multicellular development, cell differentiation, motility, and light response and a promising source of secondary metabolites. The few available systems have limitations, and exogenously based ones are unavailable. Here, we describe two new, versatile inducible systems for conditional expression of genes in M. xanthus. One employs isopropyl-β-d-thiogalactopyranoside (IPTG) as an inducer and is inspired by those successfully applied in some other bacteria. The other requires vanillate as an inducer and is based on the system developed originally for Caulobacter crescentus and recently adapted for mammalian cells. Both systems are robust, with essentially no expression in the absence of an inducer. Depending on the inducer and the amounts added, expression levels can be modulated such that either system can conditionally express genes, including ones that are essential and are required at high levels such as ftsZ. The two systems operate during vegetative growth as well as during M. xanthus development. Moreover, they can be used to simultaneously induce expression of distinct genes within the same cell. The conditional expression systems we describe substantially expand the genetic tool kit available for studying M. xanthus gene function and cellular biology.
基因的条件表达是研究其功能的有力工具,通常通过将基因置于诱导型启动子的控制下实现。然而,在粘细菌中,这种诱导型系统却很少见,粘细菌是一种研究充分的原核模式生物,可用于研究细胞多能性发育、细胞分化、运动和光反应,并且还是次生代谢物的潜在来源。现有的几种诱导系统存在局限性,并且缺乏基于外源的诱导系统。在这里,我们描述了两种在粘细菌中用于基因条件表达的新型、多功能诱导系统。一种系统使用异丙基-β-D-硫代半乳糖苷 (IPTG) 作为诱导剂,灵感来自于在其他一些细菌中成功应用的诱导剂。另一种系统需要香草酸盐作为诱导剂,它基于最初为新月柄杆菌开发的系统,并最近被改编用于哺乳动物细胞。这两种系统都很稳健,在没有诱导剂的情况下几乎没有表达。根据诱导剂和添加的量,可以调节表达水平,使得这两种系统都可以条件性表达基因,包括那些必需的和需要高水平表达的基因,如 ftsZ。这两个系统在营养生长和粘细菌发育过程中都能发挥作用。此外,它们可以用于同时诱导同一细胞中不同基因的表达。我们描述的条件表达系统极大地扩展了用于研究粘细菌基因功能和细胞生物学的遗传工具包。