Literature DB >> 21950121

An extracellular glucoamylase produced by endophytic fungus EF6.

P Tangngamsakul1, A Karnchanatat, P Sihanonth, P Sangvanich.   

Abstract

A strain of endophytic fungus EF6 isolated from Thai medicinal plants was found to produce higher levels of extracellular glucoamylase. This strain produced glucoamylase of culture filtrate when grown on 1% soluble starch. The enzyme was purified and characterized. Purification steps involved (NH4)2SO4 precipitation, anion exchange, and gel filtration chromatography. Final purification fold was 14.49 and the yield obtained was 9.15%. The enzyme is monomeric with a molecular mass of 62.2 kDa as estimated by SDS-PAGE, and with a molecular mass of 62.031 kDa estimated by MALDI-TOF spectrometry. The temperature for maximum activity was 60 degrees C. After 30 min for incubation, glucoamylase was found to be stable lower than 50 degrees C. The activity decrease rapidly when residual activity was retained about 45% at 55 degrees C. The pH optimum of the enzyme activity was 6.0, and it was stable over a pH range of 4.0-7.0 at 50 degrees C. The activity of glucoamylase was stimulated by Ca2+, Co2+, Mg2+, Mn2+, glycerol, DMSO, DTT and EDTA, and strongly inhibited by Hg2+. Various types of starch were test, soluble starch proved to be the best substrate for digestion process. The enzyme catalyzes the hydrolysis of soluble starch and maltose as the substrate, the enzyme had Km values of 2.63, and 1.88 mg/ml and Vmax, values of 1.25, and 2.54 U/min/mg protein, and Vmax/Km values of 0.48 and 1.35, respectively. The internal amino acid sequences of endophytic fungus EF6 glucoamylase; RALAN HKQVV DSFRS have similarity to the sequence of the glucoamylase purified form Thermomyces lanuginosus. From all results indicated that this enzyme is a glucoamylase (1,4-alpha-D-glucan glucanohydrolase).

Entities:  

Mesh:

Substances:

Year:  2011        PMID: 21950121

Source DB:  PubMed          Journal:  Prikl Biokhim Mikrobiol        ISSN: 0555-1099


  2 in total

1.  Identification, molecular and biochemical characterization of a novel thermoactive and thermostable glucoamylase from Thermoanaerobacter ethanolicus.

Authors:  Natael M Wayllace; Nicolas Hedín; María V Busi; Diego F Gomez-Casati
Journal:  Biotechnol Lett       Date:  2022-08-23       Impact factor: 2.716

2.  A thermostable glucoamylase from Bispora sp. MEY-1 with stability over a broad pH range and significant starch hydrolysis capacity.

Authors:  Huifang Hua; Huiying Luo; Yingguo Bai; Kun Wang; Canfang Niu; Huoqing Huang; Pengjun Shi; Caihong Wang; Peilong Yang; Bin Yao
Journal:  PLoS One       Date:  2014-11-21       Impact factor: 3.240

  2 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.