Srivastava R A, Mathur S N, Baruah J N
Acta Microbiol Pol. 1984;33(1):57-66.
Intracellular thermostable amylases from a thermophilic Baccilus sp. AK-2 have been isolated and purified. The crude enzyme, having pH optimum at 6.5. and temperature optimum at 68 degrees C was purified by DEAE-cellulose column chromatography. Three separable enzyme fractions having starch hydrolyzing property were eluted by lowering the pH from 8.5 to 7.0. Electrophoretic mobility of these fractions showed a single band. Calcium ion up to a concentration of 20 mM had an activating effect on the three fractions. The optimum temperature for the three fractions (FI, FII and FIII) was 65 degrees C and the pH optimum for each was 6.0, 6.5 and 6.0, respectively. The -SH group in the amylase molecule was essential for enzyme activity. Except for Ca2+, Mg2+, Sr2+ and Mn2+ all other metal ions studied inhibited both alpha and beta-amylase activities. EDTA showed dose dependent non-competitive inhibition. Product formation studies proved FI and FIII to be of the alpha-amylase type and FII of the beta-amylase type. The Km for the substrate (starch) in the presence or absence of EDTA was 0.8 X 10(-3) and 1.13 X 10(-3) g/ml for alpha-amylase and beta-amylase, respectively.
已从嗜热芽孢杆菌AK-2中分离并纯化出细胞内热稳定淀粉酶。粗酶在pH 6.5时具有最佳活性,在68℃时具有最佳温度,通过DEAE-纤维素柱色谱法进行纯化。通过将pH从8.5降至7.0,洗脱了三种具有淀粉水解特性的可分离酶组分。这些组分的电泳迁移率显示为单一谱带。浓度高达20 mM的钙离子对这三种组分具有激活作用。这三种组分(FI、FII和FIII)的最佳温度为65℃,各自的最佳pH分别为6.0、6.5和6.0。淀粉酶分子中的-SH基团对酶活性至关重要。除Ca2+、Mg2+、Sr2+和Mn2+外,所研究的所有其他金属离子均抑制α-淀粉酶和β-淀粉酶的活性。EDTA表现出剂量依赖性非竞争性抑制。产物形成研究证明FI和FIII为α-淀粉酶类型,FII为β-淀粉酶类型。在存在或不存在EDTA的情况下,α-淀粉酶和β-淀粉酶对底物(淀粉)的Km分别为0.8×10(-3)和1.13×10(-3) g/ml。