Cinco-Moroyoqui Francisco J, Díaz-Malváez Fernando I, Alanís-Villa Argentina, Barrón-Hoyos Jesús M, Cárdenas-López José L, Cortez-Rocha Mario O, Wong-Corral Francisco J
Departamento de Investigación y Posgrado en Alimentos, Universidad de Sonora, Blvd. Luis Encinas y Blvd. Rosales, Hermosillo, Sonora 83000, México.
Comp Biochem Physiol B Biochem Mol Biol. 2008 Jun;150(2):153-60. doi: 10.1016/j.cbpb.2008.02.008. Epub 2008 Feb 29.
Three isoamylases of Rhyzopertha dominica (termed RdA70, RdA79, and RdA90 according to their relative mobility in gel electrophoresis) were isolated by ammonium sulfate fractionation and hydrophobic interaction chromatography. RdA70 and RdA79 showed an optimal pH of 7.0, whereas for RdA90 the optimal pH was 6.5. The three isoamylases remained stable at 50 degrees C for 1 h, but at 60 degrees C, all lost 50% of their activity in 20 min and were completely inactivated in 1 h. RdA70 and RdA79 were inhibited by albumin extracts from wheat samples varying widely in amylase inhibitory activity; however, RdA90 was highly resistant to inhibition. beta-Mercaptoethanol up to 30 mM increased the activity of the three isoamylases by 2.5-fold. The action pattern of the three isoamylases was typical of endoamylases; however, differences were observed on the hydrolytic efficiency rates measured as V(max)/K(m) ratio on starch, amylopectin, and amylose. The hydrolyzing action of RdA90 on starch and amylopectin (V(max)/K(m)=90.4+/-2.3 and 78.9+/-6.6, respectively) was less efficient than that on amylose (V(max)/K(m)=214+/-23.2). RdA79 efficiently hydrolyzed both amylopectin and amylose (V(max)/K(m)=260.6+/-12.9 and 326.5+/-9.4, respectively). RdA70 hydrolyzed starch and amylose at similar rates (V(max)/K(m)=202.9+/-5.5 and 215.9+/-6.2, respectively), but amylopectin was a poor substrate (V(max)/K(m)=124.2+/-7.4). The overall results suggest that RdA70 and RdA79 appear to belong to a group of saccharifying isoamylases that breaks down long fragments of oligosaccharide chains produced by the hydrolytic action of RdA90. The simultaneous action of the three isoamylases on starch, aside from the high resistance of RdA90 to wheat amylase inhibitors, might allow R. dominica to feed and reproduce successfully on the wheat kernel.
通过硫酸铵分级分离和疏水相互作用色谱法,分离出了三种谷蠹的异淀粉酶(根据它们在凝胶电泳中的相对迁移率,分别称为RdA70、RdA79和RdA90)。RdA70和RdA79的最适pH值为7.0,而RdA90的最适pH值为6.5。这三种异淀粉酶在50℃下保持稳定1小时,但在60℃时,20分钟内全部失去50%的活性,1小时内完全失活。来自淀粉酶抑制活性差异很大的小麦样品的白蛋白提取物抑制RdA70和RdA79;然而,RdA90对抑制具有高度抗性。高达30 mM的β-巯基乙醇使这三种异淀粉酶的活性提高了2.5倍。这三种异淀粉酶的作用模式是典型的内切淀粉酶;然而,以淀粉、支链淀粉和直链淀粉的V(max)/K(m)比值衡量的水解效率速率存在差异。RdA90对淀粉和支链淀粉的水解作用(V(max)/K(m)分别为90.4±2.3和78.9±6.6)比对直链淀粉的水解作用效率低(V(max)/K(m)=214±23.2)。RdA79能高效水解支链淀粉和直链淀粉(V(max)/K(m)分别为260.6±12.9和326.5±9.4)。RdA70以相似的速率水解淀粉和直链淀粉(V(max)/K(m)分别为202.9±5.5和215.9±6.2),但支链淀粉是较差的底物(V(max)/K(m)=124.2±7.4)。总体结果表明,RdA70和RdA79似乎属于一组糖化异淀粉酶,它们分解由RdA90的水解作用产生的寡糖链的长片段。除了RdA90对小麦淀粉酶抑制剂具有高度抗性外,这三种异淀粉酶对淀粉的同时作用可能使谷蠹能够在小麦籽粒上成功取食和繁殖。