Abstract
Rhizobia are soil bacteria that form important symbiotic associations with legumes, and rhizobial surface polysaccharides, such as K-antigen polysaccharide (KPS) and lipopolysaccharide (LPS), might be important for symbiosis. Previously, we obtained a mutant of Sinorhizobium fredii HH103, rkpA, that does not produce KPS, a homopolysaccharide of a pseudaminic acid derivative, but whose LPS electrophoretic profile was indistinguishable from that of the WT strain. We also previously demonstrated that the HH103 rkpLMNOPQ operon is responsible for 5-acetamido-3,5,7,9-tetradeoxy-7-(3-hydroxybutyramido)-l-glycero-l-manno-nonulosonic acid [Pse5NAc7(3OHBu)] production and is involved in HH103 KPS and LPS biosynthesis and that an HH103 rkpM mutant cannot produce KPS and displays an altered LPS structure. Here, we analyzed the LPS structure of HH103 rkpA, focusing on the carbohydrate portion, and found that it contains a highly heterogeneous lipid A and a peculiar core oligosaccharide composed of an unusually high number of hexuronic acids containing β-configured Pse5NAc7(3OHBu). This pseudaminic acid derivative, in its α-configuration, was the only structural component of the S. fredii HH103 KPS and, to the best of our knowledge, has never been reported from any other rhizobial LPS. We also show that Pse5NAc7(3OHBu) is the complete or partial epitope for a mAb, NB6-228.22, that can recognize the HH103 LPS, but not those of most of the S. fredii strains tested here. We also show that the LPS from HH103 rkpM is identical to that of HH103 rkpA but devoid of any Pse5NAc7(3OHBu) residues. Notably, this rkpM mutant was severely impaired in symbiosis with its host, Macroptilium atropurpureum.
Highlights
Rhizobia are soil bacteria able to establish a symbiotic association with legumes in which a complex interchange of molecular signals between the prokaryotic and the eukaryotic partners takes place
In previous works [17, 31, 37], we have studied different S. fredii HH103 mutants that were affected in LPS production, as revealed by alterations in their LPS electrophoretic profiles
The rkpM gene belongs to the rkpLMNOPQ operon, which is involved in the production of the pseudaminic acid derivative that constitutes the HH103 K-antigen polysaccharide (KPS) [17]
Summary
Rhizobia are soil bacteria able to establish a symbiotic association with legumes in which a complex interchange of molecular signals between the prokaryotic and the eukaryotic partners takes place. S. fredii HH103 RifR mutants in genes located in the so-called rkp-3 region (such as rkpM, rkpP, or rkpQ) did not produce the a-Pse5NAc7 (3OHBu) KPS as well, showed altered LPS electrophoretic
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