Moosavi-Nejad S Zahra, Moosavi-Movahedi Ali-Akbar, Rezaei-Tavirani Mostafa, Floris Giovanni, Medda Rosaria
Institute of Biochemistry and Biophysics, University of Tehran, Tehran, Iran.
J Biochem Mol Biol. 2003 Mar 31;36(2):167-72. doi: 10.5483/bmbrep.2003.36.2.167.
The kinetics of thermal inactivation of copper-containing amine oxidase from lentil seedlings were studied in a 100 mM potassium phosphate buffer, pH 7, using putrescine as the substrate. The temperature range was between 47-60 degrees C. The thermal inactivation curves were not linear at 52 and 57 degrees C; three linear phases were shown. The first phase gave some information about the number of dimeric forms of the enzyme that were induced by the higher temperatures using the "conformational lock" pertaining theory to oligomeric enzyme. The "conformational lock" caused two additional dimeric forms of the enzyme when the temperature increased to 57 degrees C. The second and third phases were interpreted according to a dissociative thermal inactivation model. These phases showed that lentil amine oxidase was reversibly-dissociated before the irreversible thermal inactivation. Although lentil amine oxidase is not a thermostable enzyme, its dimeric structure can form "conformational lock," conferring a structural tolerance to the enzyme against heat stress.
以腐胺为底物,在pH 7的100 mM磷酸钾缓冲液中研究了扁豆幼苗含铜胺氧化酶的热失活动力学。温度范围为47 - 60摄氏度。在52和57摄氏度时,热失活曲线不是线性的;呈现出三个线性阶段。第一阶段利用寡聚酶的“构象锁定”相关理论,给出了关于较高温度诱导的酶二聚体形式数量的一些信息。当温度升至57摄氏度时,“构象锁定”导致酶出现另外两种二聚体形式。第二和第三阶段根据解离热失活模型进行解释。这些阶段表明,扁豆胺氧化酶在不可逆热失活之前会发生可逆解离。尽管扁豆胺氧化酶不是一种耐热酶,但其二聚体结构可以形成“构象锁定”,赋予该酶对热应激的结构耐受性。