Ahmadipour Sanaz, Wahart Alice J C, Dolan Jonathan P, Beswick Laura, Hawes Chris S, Field Robert A, Miller Gavin J
Department of Chemistry & Manchester Institute of Biotechnology, The University of Manchester, 131 Princess Street, Manchester, M1 7DN, UK.
Lennard-Jones Laboratory, School of Chemical and Physical Sciences, Keele University, Keele, Staffordshire, ST5 5BG, UK.
Beilstein J Org Chem. 2022 Sep 30;18:1379-1384. doi: 10.3762/bjoc.18.142. eCollection 2022.
Sufferers of cystic fibrosis are at significant risk of contracting chronic bacterial lung infections. The dominant pathogen in these cases is mucoid Such infections are characterised by overproduction of the exopolysaccharide alginate. We present herein the design and chemoenzymatic synthesis of sugar nucleotide tools to probe a critical enzyme within alginate biosynthesis, GDP-mannose dehydrogenase (GMD). We first synthesise C6-modified glycosyl 1-phosphates, incorporating 6-amino, 6-chloro and 6-sulfhydryl groups, followed by their evaluation as substrates for enzymatic pyrophosphorylative coupling. The development of this methodology enables access to GDP 6-chloro-6-deoxy-ᴅ-mannose and its evaluation against GMD.
囊性纤维化患者极易感染慢性细菌性肺部感染。这些病例中的主要病原体是黏液型。此类感染的特征是胞外多糖藻酸盐过度产生。我们在此展示了用于探测藻酸盐生物合成中一种关键酶——GDP-甘露糖脱氢酶(GMD)的糖核苷酸工具的设计与化学酶法合成。我们首先合成了带有6-氨基、6-氯和6-巯基的C6修饰糖基1-磷酸酯,随后将其作为酶促焦磷酸化偶联的底物进行评估。该方法的开发使得能够获得GDP 6-氯-6-脱氧-D-甘露糖并对其进行GMD活性评估。