Firsova Yulia E, Mustakhimov Ildar I, Torgonskaya Maria L
Laboratory of Radioactive Isotopes, G.K. Skryabin Institute of Biochemistry and Physiology of Microorganisms, FRC Pushchino Center for Biological Research of Russian Academy of Sciences, 142290, Pushchino, Russia.
Antonie Van Leeuwenhoek. 2023 May;116(5):393-413. doi: 10.1007/s10482-023-01811-6. Epub 2023 Jan 31.
The impact of periplasmic localisation on the functioning of the XoxF protein was evaluated in the well-studied dichloromethane-utilising methylotroph Methylorubrum extorquens DM4, which harbors only one paralogue of the xoxF gene. It was found that the cytoplasmic targeting of XoxF by expression of the corresponding gene without the sequence encoding the N-terminal signal peptide does not impair the activation and lanthanide-dependent regulation of the MxaFI-methanol dehydrogenase genes. Analysis of the viability of ΔxoxF cells complemented with the full-length and truncated xoxF gene also showed that the expression of cytoplasmically targeted XoxF even increases the resistance to acids. These results contradict the proposed function of the XoxF protein as an extracytoplasmic signal sensor. At the same time, the observed dynamics of growth with methanol, as well as with dichloromethane of strains expressing cytoplasmic-targeted XoxF, indicate the probable enzymatic activity of lanthanide-dependent methanol dehydrogenase in this compartment. Herewith, the only available substrate for this enzyme in cells growing with dichloromethane was formaldehyde, which is produced during the primary metabolism of the mentioned halogenated toxicant directly in the cytosol. These findings suggest that the maturation of XoxF-methanol dehydrogenase may occur already in the cytoplasm, while the factors changing affinity of this enzyme for formaldehyde are apparently absent there. Together with the demonstrated functioning of an enhancer-like upstream activating sequence in the promoter region of the xoxF gene in M. extorquens DM4, the obtained information enriches our understanding of the regulation, synthesis and role of the XoxF protein.
在深入研究的利用二氯甲烷的甲基营养菌嗜甲基红球菌DM4中评估了周质定位对XoxF蛋白功能的影响,该菌仅含有一个xoxF基因的旁系同源物。研究发现,通过表达相应基因使XoxF定位于细胞质,且该基因没有编码N端信号肽的序列,这并不损害MxaFI - 甲醇脱氢酶基因的激活和镧系元素依赖性调控。对用全长和截短的xoxF基因互补的ΔxoxF细胞的活力分析还表明,定位于细胞质的XoxF的表达甚至增加了对酸的抗性。这些结果与所提出的XoxF蛋白作为胞外信号传感器的功能相矛盾。同时,观察到表达定位于细胞质的XoxF的菌株利用甲醇以及二氯甲烷的生长动态,表明该区域中镧系元素依赖性甲醇脱氢酶可能具有酶活性。在此,在用二氯甲烷生长的细胞中,该酶唯一可用的底物是甲醛,它是在上述卤代毒物的初级代谢过程中直接在细胞质中产生的。这些发现表明,XoxF - 甲醇脱氢酶可能已经在细胞质中成熟,而该酶对甲醛亲和力的改变因素显然在细胞质中不存在。连同在嗜甲基红球菌DM4的xoxF基因启动子区域中证明的增强子样上游激活序列的功能,所获得的信息丰富了我们对XoxF蛋白的调控、合成和作用的理解。