Mathern B E, Burke M
Biochemistry. 1986 Feb 25;25(4):884-9. doi: 10.1021/bi00352a022.
The substructure and the thermal stability of the subunit interactions of bovine cardiac myosin subfragment 1 (SF1) have been examined. The results are in agreement with previous reports that the cardiac protein is cleaved in a very similar manner [Flink, I. L., & Morkin, E. (1982) Biophys. J. 37, 34; Korner, M., Thiem, N. V., Cardinaud, R., & Lacombe, G. (1983) Biochemistry 22, 5843-5847] but at a much faster rate [Applegate, D., Azarcon, A., & Reisler, E. (1984) Biochemistry 23, 6626-6630] than the skeletal protein. Additionally, it is found that the long-lived, steady-state intermediates formed by these proteins with MgATP at high ionic strength differ in their susceptibilities to tryptic attack especially at the 27K/50K junction of the associated heavy chains, suggesting a different conformation for these intermediates of the cardiac and skeletal SF1's. The thermal stability of the subunit interactions under conditions approaching the physiological state was examined by thermal ion-exchange chromatography of cardiac SF1 at 39.5 degrees C in the presence of MgATP. This results in the separation of part of the protein as the isolated heavy chain which is found to exhibit high levels of ATPase activity in the absence and presence of actin. Tryptic digestion of cardiac SF1 prior to thermal ion-exchange chromatography produces greater dissociation, with the heavy chain in this case being isolated as a complex of 27K, 50K, and 18-20K fragments.(ABSTRACT TRUNCATED AT 250 WORDS)
对牛心肌肌球蛋白亚片段1(SF1)亚基相互作用的亚结构和热稳定性进行了研究。结果与之前的报道一致,即心肌蛋白的切割方式非常相似[弗林克,I.L.,& 莫尔金,E.(1982年)《生物物理学杂志》37卷,34页;科纳,M.,蒂姆,N.V.,卡尔迪诺,R.,& 拉孔布,G.(1983年)《生物化学》22卷,5843 - 5847页],但比骨骼肌蛋白的切割速度快得多[阿普尔盖特,D.,阿扎尔孔,A.,& 赖斯勒,E.(1984年)《生物化学》23卷,6626 - 6630页]。此外,还发现这些蛋白质在高离子强度下与MgATP形成的长寿命稳态中间体对胰蛋白酶攻击的敏感性不同,特别是在相关重链的27K/50K连接处,这表明心肌和骨骼肌SF1的这些中间体具有不同的构象。在接近生理状态的条件下,通过在39.5摄氏度、存在MgATP的情况下对心肌SF1进行热离子交换色谱法,研究了亚基相互作用的热稳定性。这导致部分蛋白质分离为分离的重链,发现其在不存在和存在肌动蛋白的情况下均表现出高水平的ATP酶活性。在热离子交换色谱法之前对心肌SF1进行胰蛋白酶消化会产生更大程度的解离,在这种情况下,重链被分离为27K、50K和18 - 20K片段的复合物。(摘要截断于250字)