scholarly journals Estudo bioquímico de β-glucosidases de Malbranchea pulchella e aplicações na hidrólise de resíduos agroindustriais e de antocianinas

Author(s):  
Lummy Maria Oliveira Monteiro
1976 ◽  
Vol 22 (2) ◽  
pp. 165-176 ◽  
Author(s):  
Poh Seng Ong ◽  
G. Maurice Gaucher

The thermophilic fungus Malbranchea pulchella produces a single extracellular, alkaline, serine protease when grown at 45 °C, on 2% casein as sole carbon source. The growth-associated production of protease in submerged cultures was inhibited by addition of glucose, amino acids, or yeast extract. A simple four-step purification which yields homogeneous protease in 78% yield is described. The protease has an isoelectric point of 6.0, a pH optimum of 8.5, and is completely inhibited by serine protease inhibitors. A specificity study with small synthetic ester substrates indicated that the protease preferentially hydrolyzed bonds situated on the carboxyl side of aromatic or apolar amino acid residues which are not β-branched, positively charged or of the D configuration. Peptidase substrates and others such as N-acetyl-L-tyrosine-ethyl ester were not hydrolyzed. The protease was stable over a broad range of pH (6.5–9.5 at 30 °C, 20 h), and was particularly thermostable (t1/2 = 110 min at 73 °C, pH 7.4) in the presence of Ca2+ (10 mM). Macromolecules and Ca2+ also provide protection against the significant autolysis which occurs at pure protease concentrations greater than 0.01 mg/ml, as well as against surface denaturation which is enhanced by the presence of a silicone antifoam agent. Hence the stability of protease in submerged cultures is rationalized.


1994 ◽  
Vol 110 (6) ◽  
pp. 501-504 ◽  
Author(s):  
Thomas J. Benda ◽  
Jacquelynne P. Corey

Fungal sinus disease Is being reported with increasing frequency. We could find no previously reported cases of sinonasal infections with Malbranchea pulchella and only two prevously reported cases of human infection of any kind. We now report on a case of suspected sinonasal Malbranchea pulchella in a patient with aspirin-sensitive triad asthma.


2011 ◽  
Vol 49 (5) ◽  
pp. 809-815 ◽  
Author(s):  
Marita Gimenez Pereira ◽  
Luis Henrique Souza Guimarães ◽  
Rosa Prazeres Melo Furriel ◽  
Maria de Lourdes Teixeira de Moraes Polizeli ◽  
Hector Francisco Terenzi ◽  
...  

2015 ◽  
Author(s):  
Ana Sílvia de Almeida Scarcella ◽  
Ana Vici ◽  
Liliane Ribeiro ◽  
Aline Polizeli ◽  
Maria de Lourdes Teixeira de Moraes Polizeli

2014 ◽  
Vol 7 (1) ◽  
pp. 115 ◽  
Author(s):  
Liliane FC Ribeiro ◽  
Rosymar C De Lucas ◽  
Gabriela L Vitcosque ◽  
Lucas F Ribeiro ◽  
Richard J Ward ◽  
...  

1974 ◽  
Vol 52 (11) ◽  
pp. 981-990 ◽  
Author(s):  
Gerrit Voordouw ◽  
G. Maurice Gaucher ◽  
Rodney S. Roche

The physicochemical properties of the extracellular protease of the fungus Malbranchea pulchella, for which we have adopted the name thermomycolase, were investigated. The molecular weight of diisopropylphosphorylthermomycolase was found to be 32 000–33 000 by sedimentation equilibrium and sodium dodecyl sulfate (SDS) gel electrophoresis. Its sedimentation coefficient (s020, w = 2.97 S), intrinsic viscosity ([η] = 3.0 cc/g), and frictional ratio (f/f0 = 1.09) characterize the enzyme as a typical globular protein. The circular dichroism spectrum of the protein is also consistent with its globular structure. Active thermomycolase autolyzes extensively, especially at low calcium ion concentrations, producing low molecular weight peptide material. In the presence of SDS, a different autolytic degradation is observed, resulting in much higher molecular weight polypeptide products (16 500, 12 500,11 000, 8 500). The results indicate that, in the presence of SDS, thermomycolase has three sites that are highly susceptible to autolysis. At calcium ion concentrations of 10−3 M and 10−2 M the enzyme undergoes a sharp thermal denaturation with transition temperatures at 69 °C and 75 °C, respectively, and with complete loss of enzyme activity. At 70 °C the enzyme appeared to be maximally thermostable at a calcium ion concentration of 10−2 M.


2021 ◽  
Vol 30 ◽  
pp. e00618
Author(s):  
Lummy Maria Oliveira Monteiro ◽  
Ana Claudia Vici ◽  
Josana Maria Messias ◽  
Paulo Ricardo Heinen ◽  
Vanessa Elisa Pinheiro ◽  
...  

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