2017
DOI: 10.1186/s13068-017-0964-0
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Lignocellulose binding of a Cel5A-RtCBM11 chimera with enhanced β-glucanase activity monitored by electron paramagnetic resonance

Abstract: BackgroundThe Bacillus subtilis endo-β-1,4-glucanase (BsCel5A) hydrolyzes β-1,3-1,4-linked glucan, and the enzyme includes a family 3 carbohydrate-binding module (CBM3) that binds β-1,4-linked glucan.MethodsHere we investigate the BsCel5A β-1,3-1,4 glucanase activity after exchanging the CBM3 domain for the family 11 CBM from Ruminiclostridium thermocellum celH (RtCBM11) having β-1,3-1,4 glucan affinity.ResultsThe BsCel5A-RtCBM11 presents a 50.4% increase in Vmax, a 10% reduction in K0.5, and a 2.1-fold increa… Show more

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Cited by 9 publications
(5 citation statements)
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“…This preference is confirmed by the lower Km observed for chimeric Dtur CelA compared with native Dtur CelA on barley β-glucan, displaying an enhanced affinity for this polymer exerted by the addition of Ct CBM11. These findings are in accordance with a very recent work 21 on the Bacillus subtilis endo-β-1,4-glucanase BsCel5A (a GH5 with high activity on β-1,3–1,4-linked glucans), where the exchange of the CBM3, present in the wild type BsCel5A, for Ct CBM11 (with high affinity for β-1,3–1,4 glucans) increased the catalytic efficiency of the enzyme on such substrates.…”
Section: Resultssupporting
confidence: 94%
“…This preference is confirmed by the lower Km observed for chimeric Dtur CelA compared with native Dtur CelA on barley β-glucan, displaying an enhanced affinity for this polymer exerted by the addition of Ct CBM11. These findings are in accordance with a very recent work 21 on the Bacillus subtilis endo-β-1,4-glucanase BsCel5A (a GH5 with high activity on β-1,3–1,4-linked glucans), where the exchange of the CBM3, present in the wild type BsCel5A, for Ct CBM11 (with high affinity for β-1,3–1,4 glucans) increased the catalytic efficiency of the enzyme on such substrates.…”
Section: Resultssupporting
confidence: 94%
“…These are significantly reduced in the presence of arabinoxylan, and are in agreement with previous MD studies of the reduction in the mobility of the PxXyn11B on binding xylopentaose [24]. Spin-label ESR spectroscopy has been previously applied to estimate the affinity of a carbohydrate-active enzyme-MTSSL conjugate for lignocellulose substrates by measuring the decrease in Ms values on titration of the substrate [52]. In the present study, the binding of arabinoxylan generally decreased the Ms values of the BsXynA-MTSSL conjugates indicating a reduced mobility of these positions on substrate binding and agrees with the results from the MD simulations.…”
Section: Discussionsupporting
confidence: 86%
“…Electron spin resonance (ESR) spectroscopy coupled with site-directed spin labeling (SDSL) with extrinsic paramagnetic probes has been established as a successful method to study the structural dynamics of proteins [45,[49][50][51] including the direct binding affinity of biomass-degrading enzymes to insoluble lignocellulosic substrates [52]. All four BsXynA single cysteine mutants were labeled with the spin probe MTSSL, and the mobility parameter (Ms) of the probe was assessed by analysis of the ESR spectra both in the absence and presence of arabinoxylan (Table 2 and Fig.…”
Section: Esr Analysis Of the Bsxyna-mtssl Conjugatesmentioning
confidence: 99%
“…Thin-layer chromatography (TLC) analyses were performed on silica gel plates (10 × 10 cm) (Fluka, Darmstadt, Germany) at room temperature using a mobile phase composed of ethyl acetate, acetic acid, formic acid, and water in a ratio of 9:3:1:4 ( v / v ) [ 70 , 71 ]. Before the runs, the samples from 0, 30, 90, and 180 min (described in Section 3.10 ) were filtered in a 0.22-μm filter, precipitated overnight with 10% of trichloroacetic acid, and centrifuged at 12,000 × g for 10 min.…”
Section: Methodsmentioning
confidence: 99%