Wagner B J, Margolis J W
Department of Biochemistry and Molecular Biology, University of Medicine and Dentistry, New Jersey Medical School, Newark 07103.
Arch Biochem Biophys. 1993 Nov 15;307(1):146-52. doi: 10.1006/abbi.1993.1573.
The multicatalytic proteinase complex (MPC; proteasome) can be isolated in a latent form which then can be activated for protein hydrolysis by physiological and nonphysiological treatments, including high temperature. In this study, the temperature dependency profiles for the hydrolysis of Cbz-Gly-Gly-Leu-pNA and Cbz-Val-Gly-Arg-pNA by bovine lens MPC are found to be those expected for a thermostable enzyme, with single optima above 50 degrees C. In contrast, hydrolyses of Cbz-Leu-Leu-Glu-2NNp and alpha 2-crystallin, a lens structural protein, show two temperature transitions, indicating that hydrolysis of these substrates can be activated by elevated temperature. Temperature dependency profiles of peptidase activity in Tris-HCl compared to Hepes buffer suggest that Tris decreases the thermal stability of MPC. After 10 min preincubation in Tris-HCl at 53 degrees C, lens MPC activities are reduced by 50-60% and loss of the major MPC band can be seen on nondenaturing gels. The presence of alpha 2-crystallin during preincubation partially prevents the loss of activity. Although alpha-crystallin has been reported to function as a molecular chaperone, similar protection by other MPC substrates suggests that alpha 2-crystallin stabilized the MPC as a substrate. Our findings indicate both activation and inactivation of the enzyme at elevated temperatures. It is proposed therefore that high temperature activates the MPC but to a more labile form which can be partially stabilized by protein substrates.
多催化蛋白酶复合体(MPC;蛋白酶体)可以以一种潜在形式被分离出来,随后可通过包括高温在内的生理和非生理处理被激活以进行蛋白质水解。在本研究中,发现牛晶状体MPC对Cbz - Gly - Gly - Leu - pNA和Cbz - Val - Gly - Arg - pNA水解的温度依赖性曲线是热稳定酶所预期的,在50摄氏度以上有单一最佳温度。相比之下,Cbz - Leu - Leu - Glu - 2NNp和晶状体结构蛋白α2 - 晶状体蛋白的水解显示出两个温度转变,表明这些底物的水解可被升高的温度激活。与Hepes缓冲液相比,Tris - HCl中肽酶活性的温度依赖性曲线表明Tris降低了MPC的热稳定性。在53摄氏度的Tris - HCl中预孵育10分钟后,晶状体MPC活性降低50 - 60%,并且在非变性凝胶上可以看到主要MPC条带的丢失。预孵育期间α2 - 晶状体蛋白的存在部分防止了活性的丧失。尽管据报道α - 晶状体蛋白起分子伴侣的作用,但其他MPC底物的类似保护表明α2 - 晶状体蛋白作为底物稳定了MPC。我们的发现表明在升高的温度下该酶既有激活又有失活。因此有人提出高温激活MPC,但使其成为一种更不稳定的形式,这种形式可被蛋白质底物部分稳定。