Norton R S, Allerhand A
J Biol Chem. 1977 Mar 10;252(5):1795-8.
Self-association of hen egg white lysozyme in solution of 38 degrees) is examined by means of natural abundance 13C nuclear magnetic resonance spectroscopy. The effect of pH on the resonances of the nonprotonated aromatic carbons of 9 mM lysozyme, and the effect of protein concentration (at pH 7) on these resonances, both indicate that self-association significantly affects the chemical shift of Cgamma of Trp-62, but not the chemical shifts of the other nonprotonated aromatic carbons. This result is consistent with the reported participation of Trp-62 in the intermolecular contact (Banerjee, S.K., Pogolotti, A., and Rupley, J.A. (1975) J. Biol. Chem. 250, 8260-8266). Our results indicate that the resonance of Cgamma or Trp-62 is a convenient monitor of lysozyme self-association. The chemical shift of this resonance reflects the extent of aggregation, while the line width yields information about the lifetime of the intermolecular contact. This lifetime is 1 to 2 ms at 38 degrees (9 mM protein, 0.1 M NaCl, pH 7). Our results also indicate that self-association of lysozyme is not accompanied by any general conformational change, and that binding of a lanthanide ion (at the metal ion binding site near the carboxylate groups of ASP-52 AND Glu-35) strongly suppresses self-association.
利用天然丰度的¹³C核磁共振光谱法研究了38℃时蛋清溶菌酶在溶液中的自缔合现象。pH对9 mM溶菌酶非质子化芳香族碳的共振的影响,以及蛋白质浓度(在pH 7时)对这些共振的影响,均表明自缔合显著影响Trp-62的Cγ化学位移,但不影响其他非质子化芳香族碳的化学位移。这一结果与报道的Trp-62参与分子间接触的情况一致(Banerjee, S.K., Pogolotti, A., and Rupley, J.A. (1975) J. Biol. Chem. 250, 8260 - 8266)。我们的结果表明,Cγ或Trp-62的共振是溶菌酶自缔合的一个方便的监测指标。该共振的化学位移反映了聚集程度,而线宽则提供了有关分子间接触寿命的信息。在38℃时(9 mM蛋白质,0.1 M NaCl,pH 7),这个寿命为1至2毫秒。我们的结果还表明,溶菌酶的自缔合不伴随任何总体构象变化,并且镧系离子(在靠近ASP-52和Glu-35羧基的金属离子结合位点)的结合强烈抑制自缔合。