Structural basis for the strict substrate specificity of β-D-galactofuranosidase fromStreptomycessp. JHA19

Author:

Fujio NorikiORCID,Yamada ChihayaORCID,Kashima TomaORCID,Matsunaga Emiko,Nash Robert J.ORCID,Takegawa KaoruORCID,Fushinobu ShinyaORCID

Abstract

AbstractD-Galactofuranose (Galf) is widely distributed in polysaccharides and glycoconjugates of bacteria, filamentous fungi, and protozoa. The biosynthetic and degradation pathways of Galfin pathogens have attracted attention as potential targets for drug development. β-D-Galactofuranosidase (Galf-ase) releases Galffrom the non-reducing ends of glycans. Galf-ase activity is often exhibited by α-L-arabinofuranosidases, which hydrolyze a similar substrate. Several Galf-specific Galf-ases that cleave only Galfand not L-arabinofuranose (Araf) have recently been identified in the glycoside hydrolase (GH) families 2, 5, and 43. However, the structural basis of how they discriminate the substrates is unknown. ORF1110, belonging to GH2, is the first identified Galf-specific Galf-ase isolated fromStreptomycessp. JHA19. Here, we solved the crystal structure of ORF1110 in complex with a mechanism-based potent inhibitor, D-iminogalactitol (Ki= 65 μM). ORF1110 binds to the C5-C6 hydroxy groups of D-iminogalactitol with an extensive and integral hydrogen bond network. This result suggests that in the case of Araf, which lacks the C6 hydroxymethyl group, this network is not formed. The domain structure of ORF1110 is similar to that of β-glucuronidases and β-galactosidases, which belong to the same GH2 family and hydrolyze pyranose substrates. However, their active site structures were completely different. A predicted structure of the C-terminal Abf domain of ORF1110 was very similar to the carbohydrate-binding module family 42, which binds Araf, and pockets that may bind Galfwere present.

Publisher

Cold Spring Harbor Laboratory

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