University of Szeged Faculty of Science and Informatics, Department of Microbiology, Szeged, Hungary.
University of Szeged Faculty of Science and Informatics, Department of Inorganic and Analytical Chemistry, Szeged, Hungary.
Commun Biol. 2022 Jul 21;5(1):723. doi: 10.1038/s42003-022-03684-3.
Several strikingly different aerobic and anaerobic pathways of nicotinate breakdown are extant in bacteria. Here, through reverse genetics and analytical techniques we elucidated in Aspergillus nidulans, a complete eukaryotic nicotinate utilization pathway. The pathway extant in this fungus and other ascomycetes, is quite different from bacterial ones. All intermediate metabolites were identified. The cognate proteins, encoded by eleven genes (hxn) mapping in three clusters are co-regulated by a specific transcription factor. Several enzymatic steps have no prokaryotic equivalent and two metabolites, 3-hydroxypiperidine-2,6-dione and 5,6-dihydroxypiperidine-2-one, have not been identified previously in any organism, the latter being a novel chemical compound. Hydrolytic ring opening results in α-hydroxyglutaramate, a compound not detected in analogous prokaryotic pathways. Our earlier phylogenetic analysis of Hxn proteins together with this complete biochemical pathway illustrates convergent evolution of catabolic pathways between fungi and bacteria.
在细菌中存在几种截然不同的烟酸分解有氧和无氧途径。在这里,我们通过反向遗传学和分析技术,阐明了在构巢曲霉中存在一种完整的真核烟酸利用途径。该途径在真菌和其他子囊菌中与细菌途径有很大的不同。所有中间代谢物都被鉴定出来。由 11 个基因(hxn)编码的同源蛋白映射在三个簇中,由一个特定的转录因子共同调控。几个酶促步骤在原核生物中没有对应物,两种代谢物,3-羟基哌啶-2,6-二酮和 5,6-二羟基哌啶-2-酮,以前在任何生物体中都没有被发现,后者是一种新的化合物。水解开环产生α-羟基戊二酰谷氨酸,这是在类似的原核途径中没有检测到的化合物。我们之前对 Hxn 蛋白的系统发育分析以及这个完整的生化途径表明,真菌和细菌之间的代谢途径存在趋同进化。