Trefault Nicole, Guzmán Leda, Pérez Heidi, Godoy Margarita, González Bernardo
Pontifical Catholic University of Chile, Santiago, Chile.
Int Microbiol. 2009 Jun;12(2):97-106.
Cupriavidus necator JMP134 has been extensively studied because of its ability to degrade chloroaromatic compounds, including the herbicides 2,4-dichlorophenoxyacetic acid (2,4-D) and 3-chlorobenzoic acid (3-CB), which is achieved through the pJP4-encoded chlorocatechol degradation gene clusters: tfdCIDIEIFI and tfdDIICIIEIIFII. The present work describes a different tfd-genes expression profile depending on whether C. necator cells were induced with 2,4-D or 3-CB. By contrast, in vitro binding assays of the purified transcriptional activator TfdR showed similar binding to both tfd intergenic regions; these results were confirmed by in vivo studies of the expression of transcriptional lacZ fusions for these intergenic regions. Experiments aimed at investigating whether other pJP4 plasmid or chromosomal regulatory proteins could contribute to the differences in the response of both tfd promoters to induction by 2,4-D and 3-CB showed that the transcriptional regulators from the benzoate degradation pathway, CatR1 and CatR2, affected 3-CB- and 2,4-D-related growth capabilities. It was also determined that the ISJP4-interrupted protein TfdT decreased growth on 3-CB. In addition, an ORF with 34% amino acid identity to IclR-type transcriptional regulator members and located near the tfdII gene cluster module was shown to modulate the 2,4-D growth capability. Taken together, these results suggest that tfd transcriptional regulation in C. necator JMP134 is far more complex than previously thought and that it involves proteins from different transcriptional regulator families.
食酸丛毛单胞菌JMP134因其能够降解氯代芳香族化合物而受到广泛研究,这些化合物包括除草剂2,4-二氯苯氧乙酸(2,4-D)和3-氯苯甲酸(3-CB),这是通过pJP4编码的氯儿茶酚降解基因簇tfdCIDIEIFI和tfdDIICIIEIIFII实现的。目前的研究描述了根据食酸丛毛单胞菌细胞是用2,4-D还是3-CB诱导而产生的不同tfd基因表达谱。相比之下,纯化的转录激活因子TfdR的体外结合试验表明,它与两个tfd基因间区域的结合相似;这些结果通过对这些基因间区域的转录lacZ融合表达的体内研究得到了证实。旨在研究其他pJP4质粒或染色体调节蛋白是否可能导致两个tfd启动子对2,4-D和3-CB诱导反应差异的实验表明,来自苯甲酸降解途径的转录调节因子CatR1和CatR2影响了与3-CB和2,4-D相关的生长能力。还确定了ISJP4中断蛋白TfdT降低了在3-CB上的生长。此外,一个与IclR型转录调节因子成员具有34%氨基酸同一性且位于tfdII基因簇模块附近的开放阅读框被证明可调节2,4-D的生长能力。综上所述,这些结果表明食酸丛毛单胞菌JMP134中的tfd转录调控比以前认为的要复杂得多,并且涉及来自不同转录调节因子家族的蛋白质。