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Abstract

Treatment of Aspergillus niveus with 30 μg tunicamycin/ml did not interfere with α-glucosidase production, secretion, or its catalytic properties. Fully- and under-glycosylated forms of the enzyme had similar molecular masses, ~56 kDa. Moreover, the absence of N-glycans did not affect either pH optimum (6.0) or temperature optimum (65°C). The K^sub m^ and V^sub max^ values of under- and fully-glycosylated forms of α-glucosidase were similar when assessed for hydrolysis of starch (~0.6 mg/ml, ~350 μmol glucose per min per ml), maltose (~0.54 μmol, ~330 μmol glucose per min per ml) and p-nitrophenyl-α-d-glucopyranoside (~0.54 μmol, ~8.28 μmol p-nitrophenol per min per ml). However, the under-glycosylated form was sensitive to high temperatures probably because, in addition to stabilizing the protein conformation, glycosylation may also prevent unfolded or partially folded proteins from aggregating. Binding assays clearly showed that the under-glycosylated protein did not bind to concanavalin A but has conserve its jacalin-binding property, suggesting that only O-glycans might be intact on the tunicamycin treated form of the enzyme.[PUBLICATION ABSTRACT]

Details

Title
Tunicamycin inhibition of N-glycosylation of [alpha]-glucosidase from Aspergillus niveus: partial influence on biochemical properties
Author
Silva, Tony Márcio; Dos Reis Almeida, Fausto Bruno; de Lima Damásio, André Ricardo; Maller, Alexandre; Michelin, Michele; Jorge, João Atílio; Hanna, Ebert Seixas; Roque-barreira, Maria Cristina; Terenzi, Héctor F; de Lourdes Teixeira de Moraes Polizeli, Maria
Pages
1449-55
Publication year
2010
Publication date
Oct 2010
Publisher
Springer Nature B.V.
ISSN
0141-5492
e-ISSN
1573-6776
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
815403889
Copyright
Springer Science+Business Media B.V. 2010