Moreau Y, Desseaux V, Koukiekolo R, Marchis-Mouren G, Santimone M
IRD, c/o Institut Méditerranéen de Recherche en Nutrition, Faculté de Sciences et Techniques de St Jérôme, Université d'Aix-Marseille, av. Escadrille Normandie-Niemen, F-13397, Marseille cedex 20, France.
Comp Biochem Physiol B Biochem Mol Biol. 2001 Mar;128(3):543-52. doi: 10.1016/s1096-4959(00)00358-4.
alpha-Amylases from the intestinal cavity of two tilapia species, Oreochromis niloticus (ONI-AMY) and Sarotherodon melanotheron (SME-AMY), were purified using ammonium sulfate precipitation, affinity chromatography and chromatofocusing procedures. The purification was approximately 100-fold. The amylolytic activity, specific activity, product distribution, pH and temperature profile of ONI-AMY and SME-AMY are quite similar. The molecular mass differs slightly: 56600 (ONI-AMY) vs. 55500 (SME-AMY). As shown by isoelectric focusing analysis, both amylases contain two isoforms A and B with distinct pI: 7.2 (A) and 7.8 (B), vs. 8.3 (A) and 8.8 (B), respectively. It was not possible to isolate B, since B converts into A with time. The kinetics of the inhibition of ONI-AMY and SME-AMY activity by alpha-, beta- and gamma-cyclodextrin (alpha-, beta- and gamma-CD) were investigated using amylose as the substrate. Statistical analysis of the kinetic data expressed using a general velocity equation and assuming rapid equilibrium showed that the inhibition is of the mixed noncompetitive type. Similar results were obtained with ONI-AMY and SME-AMY. beta- and gamma-CD are stronger inhibitors than alpha-CD. ONI-AMY and SME-AMY are then closely related and show the general features common to the members of the alpha-amylase class (family 13). They enable ONI and SME tilapias to digest starch in food.
利用硫酸铵沉淀、亲和色谱和色谱聚焦法对尼罗罗非鱼(ONI - AMY)和黑罗非鱼(SME - AMY)两种罗非鱼肠道腔中的α -淀粉酶进行了纯化。纯化倍数约为100倍。ONI - AMY和SME - AMY的淀粉分解活性、比活性、产物分布、pH和温度曲线非常相似。分子量略有差异:56600(ONI - AMY)对55500(SME - AMY)。等电聚焦分析表明,两种淀粉酶均含有两种不同pI的同工型A和B:分别为7.2(A)和7.8(B),以及8.3(A)和8.8(B)。由于B会随时间转化为A,因此无法分离出B。以直链淀粉为底物,研究了α -、β -和γ -环糊精(α -、β -和γ - CD)对ONI - AMY和SME - AMY活性的抑制动力学。使用通用速度方程并假设快速平衡对动力学数据进行统计分析表明,抑制作用为混合型非竞争性。ONI - AMY和SME - AMY得到了相似的结果。β -和γ - CD是比α - CD更强的抑制剂。ONI - AMY和SME - AMY密切相关,并表现出α -淀粉酶家族(第13家族)成员共有的一般特征。它们使尼罗罗非鱼和黑罗非鱼能够消化食物中的淀粉。