Takeda A, Hachimori A, Murai M, Sato K, Samejima T
J Biochem. 1975 Nov;78(5):911-24. doi: 10.1093/oxfordjournals.jbchem.a130997.
Native bovine liver catalase [EC 1.11.1.6] and catalase acetylated with N-acetylimidazole (AI) both combined with sodium dodecyl sulfate (SDS) to form catalase-SDS complexes. The differences between native and acetylated catalase bound to SDS were investigated as regards enzymatic activity, absorption spectra, ORD and CD, sedimentation velocity and fluorescence spectra. It was found that the binding of SDS with both catalases depended on incubation time and SDS concentration, and that the acetylation of catalase had some protective effect on the denaturation of the molecule by SDS, which may be ascribed to a reduction of ionic interaction between SDS and the protein on acetylation. The native catalase was found to split into three smaller components on incubation with 1% SDS for 96 hr, whereas the acetylated catalase split into two smaller components. These smaller components were isolated by gel filtration through Sephadex G-100. The isolated components has estimated molecular weights of 60,000, 30,000, aide. It seemed likely that the modification occurred stepwise. Approximately 26% of the carboxyl groups of fibrinogen was modified finally. The modified fibrinogen had no interaction with cationic detergent, and did not form any complex with the detergent. In dilute acid, fibrinogen was observed to show only a slight interaction with cationic detergent. It is probable that the exposed and ionized carboxyl groups are essential for the formation of a complex between fibrinogen and cationic detergent.
天然牛肝过氧化氢酶[EC 1.11.1.6]和用N-乙酰咪唑(AI)乙酰化的过氧化氢酶均与十二烷基硫酸钠(SDS)结合形成过氧化氢酶-SDS复合物。从酶活性、吸收光谱、ORD和CD、沉降速度以及荧光光谱等方面研究了与SDS结合的天然和乙酰化过氧化氢酶之间的差异。发现SDS与两种过氧化氢酶的结合取决于孵育时间和SDS浓度,并且过氧化氢酶的乙酰化对SDS引起的分子变性有一定的保护作用,这可能归因于乙酰化后SDS与蛋白质之间离子相互作用的减少。发现天然过氧化氢酶与1%SDS孵育96小时后会分解成三个较小的组分,而乙酰化过氧化氢酶则分解成两个较小的组分。这些较小的组分通过Sephadex G-100凝胶过滤分离。分离出的组分估计分子量分别为60,000、30,000等。修饰似乎是逐步发生的。纤维蛋白原最终约26%的羧基被修饰。修饰后的纤维蛋白原与阳离子去污剂没有相互作用,也不与去污剂形成任何复合物。在稀酸中,观察到纤维蛋白原与阳离子去污剂只有轻微的相互作用。暴露的和离子化的羧基可能对纤维蛋白原与阳离子去污剂之间复合物的形成至关重要。