Fontana A, Fassina G, Vita C, Dalzoppo D, Zamai M, Zambonin M
Biochemistry. 1986 Apr 22;25(8):1847-51. doi: 10.1021/bi00356a001.
Limited proteolysis or autolysis of thermolysin under different experimental conditions leads to fission of a small number of peptide bonds located in exposed surface segments of the polypeptide chain characterized by highest mobility, as given by the temperature factors (B values) determined crystallographically [Holmes, M.A., & Matthews, B.W. (1982) J. Mol. Biol. 160, 623-639]. Considering also similar findings observed previously with other protein systems, it is proposed that this correlation between segmental mobility and sites of limited proteolysis in globular proteins is quite general. Thus, flexibility of the polypeptide chain of a globular protein at the site of proteolytic attack promotes optimal binding and proper interaction with the active site of the protease. These findings emphasize that apparent thermal motion seen in protein crystals is relevant to motion in solution and appear to be of general significance in protein-protein recognition processes.
在不同实验条件下,嗜热菌蛋白酶的有限蛋白水解或自溶会导致位于多肽链暴露表面片段中少量肽键的断裂,这些片段具有最高的流动性,这由晶体学测定的温度因子(B值)给出[霍姆斯,M.A.,& 马修斯,B.W.(1982年)《分子生物学杂志》160卷,623 - 639页]。考虑到之前在其他蛋白质系统中也观察到类似的发现,有人提出球状蛋白质中片段流动性与有限蛋白水解位点之间的这种相关性是相当普遍的。因此,球状蛋白质多肽链在蛋白水解攻击位点的灵活性促进了与蛋白酶活性位点的最佳结合和适当相互作用。这些发现强调,在蛋白质晶体中看到的明显热运动与溶液中的运动相关,并且在蛋白质 - 蛋白质识别过程中似乎具有普遍意义。