From the Department of Biosciences, Molecular Cell Biology of Plants.
J Biol Chem. 2013 Oct 25;288(43):31192-205. doi: 10.1074/jbc.M113.495598. Epub 2013 Sep 6.
The TolC-like protein HgdD of the filamentous, heterocyst-forming cyanobacterium Anabaena sp. PCC 7120 is part of multiple three-component "AB-D" systems spanning the inner and outer membranes and is involved in secretion of various compounds, including lipids, metabolites, antibiotics, and proteins. Several components of HgdD-dependent tripartite transport systems have been identified, but the diversity of inner membrane energizing systems is still unknown. Here we identified six putative resistance-nodulation-cell division (RND) type factors. Four of them are expressed during late exponential and stationary growth phase under normal growth conditions, whereas the other two are induced upon incubation with erythromycin or ethidium bromide. The constitutively expressed RND component Alr4267 has an atypical predicted topology, and a mutant strain (I-alr4267) shows a reduction in the content of monogalactosyldiacylglycerol as well as an altered filament shape. An insertion mutant of the ethidium bromide-induced all7631 did not show any significant phenotypic alteration under the conditions tested. Mutants of the constitutively expressed all3143 and alr1656 exhibited a Fox(-) phenotype. The phenotype of the insertion mutant I-all3143 parallels that of the I-hgdD mutant with respect to antibiotic sensitivity, lipid profile, and ethidium efflux. In addition, expression of the RND genes all3143 and all3144 partially complements the capability of Escherichia coli ΔacrAB to transport ethidium. We postulate that the RND transporter All3143 and the predicted membrane fusion protein All3144, as homologs of E. coli AcrB and AcrA, respectively, are major players for antibiotic resistance in Anabaena sp. PCC 7120.
丝状异形胞蓝藻鱼腥藻 PCC 7120 的 TolC 样蛋白 HgdD 是多个跨内外膜的三组分“AB-D”系统的一部分,参与多种化合物的分泌,包括脂质、代谢物、抗生素和蛋白质。已经鉴定出 HgdD 依赖的三部分运输系统的几个组成部分,但内膜供能系统的多样性仍然未知。在这里,我们鉴定了六个假定的抗性调节细胞分裂(RND)型因子。其中四个在正常生长条件下的指数晚期和静止生长阶段表达,而另外两个在与红霉素或溴乙锭孵育时诱导表达。组成型表达的 RND 成分 Alr4267 具有非典型的预测拓扑结构,突变株(I-alr4267)显示单半乳糖二酰基甘油含量减少以及丝状形状改变。在测试条件下,溴乙锭诱导的 all7631 的插入突变体没有显示任何明显的表型改变。组成型表达的 all3143 和 alr1656 的突变体表现出 Fox(-)表型。插入突变体 I-all3143 的表型与 I-hgdD 突变体在抗生素敏感性、脂质谱和溴乙锭外排方面相似。此外,RND 基因 all3143 和 all3144 的表达部分补充了大肠杆菌 ΔacrAB 运输溴乙锭的能力。我们假设 RND 转运蛋白 All3143 和预测的膜融合蛋白 All3144 分别作为大肠杆菌 AcrB 和 AcrA 的同源物,是鱼腥藻 PCC 7120 中抗生素抗性的主要参与者。