Affiliation:
1. Department of Biochemistry and Microbiology, Cook College, Rutgers University, New Brunswick, New Jersey 08901
Abstract
ABSTRACT
Characterization in
Thermotoga neapolitana
of a catabolic gene cluster encoding two glycosyl hydrolases, 1,4-β-
d
-glucan glucohydrolase (GghA) and cellobiose phosphorylase (CbpA), and the apparent absence of a cellobiohydrolase (Cbh) suggest a nonconventional pathway for glucan utilization in
Thermotogales
. GghA purified from
T. neapolitana
is a 52.5-kDa family 1 glycosyl hydrolase with optimal activity at pH 6.5 and 95°C. GghA releases glucose from soluble glucooligomers, with a preference for longer oligomers:
k
cat
/
K
m
values are 155.2, 76.0, and 9.9 mM
−1
s
−1
for cellotetraose, cellotriose, and cellobiose, respectively. GghA has broad substrate specificity, with specific activities of 236 U/mg towards cellobiose and 251 U/mg towards lactose. With
p
-nitrophenyl-β-glucoside as the substrate, GghA exhibits biphasic kinetic behavior, involving both substrate- and end product-directed activation. Its capacity for transglycosylation is a factor in this activation. Cloning of
gghA
revealed a contiguous upstream gene (
cbpA
) encoding a 93.5-kDa cellobiose phosphorylase. Recombinant CbpA has optimal activity at pH 5.0 and 85°C. It has specific activity of 11.8 U/mg and a
K
m
of 1.42 mM for cellobiose, but shows no activity towards other disaccharides or cellotriose. With its single substrate specificity and low
K
m
for cellobiose (compared to GghA's
K
m
of 28.6 mM), CbpA may be the primary enzyme for attacking cellobiose in
Thermotoga
spp. By phosphorolysis of cellobiose, CbpA releases one activated glucosyl molecule while conserving one ATP molecule per disaccharide. CbpA is the first hyperthermophilic cellobiose phosphorylase to be characterized.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Cited by
65 articles.
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