TY - JOUR
T1 - A novel glycoside hydrolase 43-like enzyme from Clostridium boliviensis is an endo-xylanase and a candidate for xylooligosaccharide production from different xylan substrates
AU - Salas-Veizaga, Daniel Martin
AU - Rocabado-Villegas, Leonardo Roberto
AU - Linares-Pastén, Javier A.
AU - Eik Gudmundsdottir, Elisabet
AU - Hreggvidsson, Gudmundur Oli
AU - Álvarez-Aliaga, Maria Teresa
AU - Adlercreutz, Patrick
AU - Nordberg Karlsson, Eva
PY - 2024
Y1 - 2024
N2 - An uncharacterized gene encoding a glycoside hydrolase family 43-like enzyme from Clostridium boliviensis strain E-1 was identified from genomic sequence data, and the encoded enzyme, CbE1Xyn43-l, was produced in Escherichia coli. CbE1Xyn43-l
(52.9 kDa) is a two-domain endo-β-xylanase consisting of a C-terminal
CBM6 and a GH43-like catalytic domain. The positions of the catalytic
dyad conserved in GH43, the catalytic base (Asp74), and proton donor
(Glu240) were identified in alignments including GH43-enzymes of known
3D-structure from different subfamilies. CbE1Xyn43-l is active at
pH 7.0–9.0, with optimum temperature at 65°C, and a more than 7 days’
half-life in irreversible deactivation studies at this temperature. The
enzyme hydrolyzed birchwood xylan, quinoa stalks glucuronoarabinoxylan,
and wheat arabinoxylan with xylotriose and xylotetraose as major
hydrolysis products. CbE1Xyn43-l also released xylobiose from pNPX2 with low turnover (kcat of 0.044 s−1) but was inactive on pNPX,
showing that a degree of polymerization of three (DP3) was the smallest
hydrolyzable substrate. Divalent ions affected the specific activity on
xylan substrates, which dependent on the ion could be increased or
decreased. In conclusion, CbE1Xyn43-l from C. boliviensis
strain E-1 is the first characterized member of a large group of
homologous hypothetical proteins annotated as GH43-like and is a
thermostable endo-xylanase, producing xylooligosaccharides of high DP
(xylotriose and xylotetraose) producer.
AB - An uncharacterized gene encoding a glycoside hydrolase family 43-like enzyme from Clostridium boliviensis strain E-1 was identified from genomic sequence data, and the encoded enzyme, CbE1Xyn43-l, was produced in Escherichia coli. CbE1Xyn43-l
(52.9 kDa) is a two-domain endo-β-xylanase consisting of a C-terminal
CBM6 and a GH43-like catalytic domain. The positions of the catalytic
dyad conserved in GH43, the catalytic base (Asp74), and proton donor
(Glu240) were identified in alignments including GH43-enzymes of known
3D-structure from different subfamilies. CbE1Xyn43-l is active at
pH 7.0–9.0, with optimum temperature at 65°C, and a more than 7 days’
half-life in irreversible deactivation studies at this temperature. The
enzyme hydrolyzed birchwood xylan, quinoa stalks glucuronoarabinoxylan,
and wheat arabinoxylan with xylotriose and xylotetraose as major
hydrolysis products. CbE1Xyn43-l also released xylobiose from pNPX2 with low turnover (kcat of 0.044 s−1) but was inactive on pNPX,
showing that a degree of polymerization of three (DP3) was the smallest
hydrolyzable substrate. Divalent ions affected the specific activity on
xylan substrates, which dependent on the ion could be increased or
decreased. In conclusion, CbE1Xyn43-l from C. boliviensis
strain E-1 is the first characterized member of a large group of
homologous hypothetical proteins annotated as GH43-like and is a
thermostable endo-xylanase, producing xylooligosaccharides of high DP
(xylotriose and xylotetraose) producer.
U2 - 10.1128/aem.02223-23
DO - 10.1128/aem.02223-23
M3 - Article
C2 - 38497645
SN - 0099-2240
VL - 90
JO - Applied and Environmental Microbiology
JF - Applied and Environmental Microbiology
IS - 4
M1 - e02223-23
ER -