5t7a
From Proteopedia
Crystal structure of Br derivative BhCBM56
Structural highlights
Publication Abstract from PubMedBH0236 from Bacillus halodurans is a multimodular beta-1,3-glucanase comprising an N-terminal family 81 glycoside hydrolase catalytic module, an internal family 6 carbohydrate-binding module (CBM) that binds the nonreducing end of beta-1,3-glucan chains, and an uncharacterized C-terminal module classified into CBM family 56. Here, we determined that this latter CBM, BhCBM56, bound the soluble beta-1,3-glucan laminarin with a dissociation constant (Kd ) of approximately 26 mum and displayed higher affinity for insoluble beta-1,3-glucans with Kd values of approximately 2-10 mum but lacked affinity for beta-1,3-glucooligosaccharides. The X-ray crystal structure of BhCBM56 and NMR-derived chemical shift mapping of the binding site revealed a beta-sandwich fold, with the face of one beta-sheet possessing the beta-1,3-glucan-binding surface. On the basis of the functional and structural properties of BhCBM56, we propose that it binds a quaternary polysaccharide structure, most likely the triple helix adopted by polymerized beta-1,3-glucans. Consistent with the BhCBM56 and BhCBM6/56 binding profiles, deletion of the CBM56 from BH0236 decreased activity of the enzyme on the insoluble beta-1,3-glucan curdlan but not on soluble laminarin; additional deletion of the CBM6 also did not affect laminarin degradation but further decreased curdlan hydrolysis. The pseudo-atomic solution structure of BH0236 determined by small-angle X-ray scattering revealed structural insights into the nature of avid binding by the BhCBM6/56 pair and how the orientation of the active site in the catalytic module factors into recognition and degradation of beta-1,3-glucans. Our findings reinforce the notion that catalytic modules and their cognate CBMs have complementary specificities, including targeting of polysaccharide quaternary structure. Properties of a family 56 carbohydrate-binding module and its role in the recognition and hydrolysis of beta-1,3-glucan.,Hettle A, Fillo A, Abe K, Massel P, Pluvinage B, Langelaan DN, Smith SP, Boraston AB J Biol Chem. 2017 Oct 13;292(41):16955-16968. doi: 10.1074/jbc.M117.806711. Epub , 2017 Aug 21. PMID:28827308[1] From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine. References
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