首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Purification and properties of beta‐cyclomaltodextrin glucanotransferase from Bacillus flexus Bacillus flexus SV 1
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Purification and properties of beta‐cyclomaltodextrin glucanotransferase from Bacillus flexus Bacillus flexus SV 1

机译:Bacillus Flexis Bacillus Flexis SV 1β-环氨醇糖胺葡聚糖转移酶的纯化和性质

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摘要

Cyclomaltodextrin glucanotransferase is a unique enzyme that degrades starch into cyclic oligosaccharides called cyclodextrins, which have numerous applications in various industries such as pharmaceutical, textile, agricultural, cosmetics etc. Due to its wide applications, microorganism producing one type of cyclodextrin is of interest as it simplifies the down streaming process of separating mixture of cyclodextrins. In the present study, β‐CGTase was isolated from Bacillus flexus SV 1 and biochemically characterized. Enzyme was purified by starch adsorption followed by DEAE cellulose column chromatography which resulted in a fold purification of 6.1, with a yield of 44.07%. Molecular weight of the purified enzyme was found to be 96.68?kDa, enzyme was monomeric in nature with a K m and V max of 0.08976?μmol?mL ?1 and 585.1?μmol/ml/min, respectively. Optimum pH and temperature of the purified enzyme was found to be 8.0 and 60?°C. Ca 2+ showed significant increase in enzyme activity. The inhibition of enzyme by EDTA indicates that CGTase is a metalloenzyme. CGTase produced majorly β‐CD and was alkalotolarent and active at high temperatures which is a promising candidate for various industries such as textile, food, agriculture, and pharmaceuticals.
机译:环罗酮葡聚糖葡聚糖转移酶是一种独特的酶,其将淀粉降解到称为环糊精的环状低聚糖中,这些寡糖在药物,纺织,农业,化妆品等各个行业中具有许多应用,由于其广泛的应用,产生一种类型的环糊精的微生物是感兴趣的简化分离环糊精混合物的下媒体过程。在本研究中,从Bacillus flexus sv1和生物化学表征中分离β-cgtase。通过淀粉吸附纯化酶,然后通过DEAE纤维素柱色谱法,其折叠纯化为6.1,产率为44.07%。发现纯化酶的分子量为96.68Ω,酶本质上是单体的,K m和v max为0.08976Ω·mlα1和585.1αμmol/ ml / min。纯化酶的最佳pH和温度被发现为8.0和60℃。 Ca 2+显示出酶活性的显着增加。 EDTA对酶的抑制表明CGTase是金属酶。 CGTase产生的主要β-CD并在高温下是碱性的,并且是各种行业的有希望的候选者,如纺织,食品,农业和药品。

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