Department Biology I, Microbiology, Ludwig-Maximilians-Universität München, Planegg/Martinsried, Germany.
Sci Rep. 2021 Jun 7;11(1):11991. doi: 10.1038/s41598-021-91421-x.
L-Rhamnose is an important monosaccharide both as nutrient source and as building block in prokaryotic glycoproteins and glycolipids. Generation of those composite molecules requires activated precursors being provided e. g. in form of nucleotide sugars such as dTDP-β-L-rhamnose (dTDP-L-Rha). dTDP-L-Rha is synthesized in a conserved 4-step reaction which is canonically catalyzed by the enzymes RmlABCD. An intact pathway is especially important for the fitness of pseudomonads, as dTDP-L-Rha is essential for the activation of the polyproline specific translation elongation factor EF-P in these bacteria. Within the scope of this study, we investigated the dTDP-L-Rha-biosynthesis route of Pseudomonas putida KT2440 with a focus on the last two steps. Bioinformatic analysis in combination with a screening approach revealed that epimerization of dTDP-4-keto-6-deoxy-D-glucose to dTDP-4-keto-6-deoxy-L-mannose is catalyzed by the two paralogous proteins PP_1782 (RmlC1) and PP_0265 (RmlC2), whereas the reduction to the final product is solely mediated by PP_1784 (RmlD). Thus, we also exclude the distinct RmlD homolog PP_0500 and the genetically linked nucleoside diphosphate-sugar epimerase PP_0501 to be involved in dTDP-L-Rha formation, other than suggested by certain databases. Together our analysis contributes to the molecular understanding how this important nucleotide-sugar is synthesized in pseudomonads.
L-鼠李糖是一种重要的单糖,既是营养源,也是原核糖蛋白和糖脂的结构单元。这些复合分子的生成需要提供激活的前体,例如以核苷酸糖的形式,如 dTDP-β-L-鼠李糖(dTDP-L-Rha)。dTDP-L-Rha 是通过一个保守的 4 步反应合成的,该反应通常由酶 RmlABCD 催化。完整的途径对于假单胞菌的适应性尤为重要,因为 dTDP-L-Rha 是这些细菌中多脯氨酸特异性翻译延伸因子 EF-P 激活所必需的。在本研究范围内,我们研究了恶臭假单胞菌 KT2440 的 dTDP-L-Rha 生物合成途径,重点研究了最后两步。生物信息学分析结合筛选方法表明,dTDP-4-酮-6-脱氧-D-葡萄糖的差向异构化为 dTDP-4-酮-6-脱氧-L-甘露糖由两个平行的蛋白 PP_1782(RmlC1)和 PP_0265(RmlC2)催化,而还原为最终产物仅由 PP_1784(RmlD)介导。因此,我们还排除了不同的 RmlD 同源物 PP_0500 和遗传上相关的核苷二磷酸-糖差向异构酶 PP_0501 参与 dTDP-L-Rha 的形成,这与某些数据库的建议不同。我们的分析有助于理解重要核苷酸糖在假单胞菌中合成的分子机制。