Snyder G H, Rowan R, Sykes B D
Biochemistry. 1976 Jun 1;15(11):2275-83. doi: 10.1021/bi00656a005.
The low-field portions of the 250-MHz 1H nuclear magnetic resonance spectra of native and chemically modified basic pancreatic trypsin inhibitor have been studied as a function of pH over the range pH 5-13. In derivatives selectively reduced and carboxamidomethylated at cystine 14-38, resonances associated with 15 of the 16 protons of the aromatic rings of the four tyrosines of the inhibitor have been located and assigned to specific tyrosyl residues. Titrations of pH yielded pK's for tyrosines 10, 21, 23, and 35 in the modified inhibitor of 9.9, 10.6, 11.6, and 11.0, respectively. Resonances associated with the three nitrotyrosine 10 protons of the mononitrated derivative and the six nitrotyrosine 10 and 21 protons of the dinitrated derivative have been similarly located, assigned, and titrated, yielding pK's for nitrotyrosines 10 and 21 of 6.5 and 6.4, respectively. Previously reported results for derivatives with cystine 14-38 intact have been revised on the basis of new data. Comparison of these revised results with the new data for derivatives with modified cystine 14-38 reveals no changes in pK's for any tyrosine or nitrotyrosing ring and no changes in chemical shift for resonances of nitrotyrosine 21 or tyrosines 21 and 23. However, modification of cystine 14-38 causes significant changes in chemical shifts of resonances of the nearby nitrotyrosine 10 and tyrosine 10 and 35 rings. Tyrosine 35 remains relatively immobile, rotating less than 1600 times/s at 25 degrees C for pH's in the range 5-13.
对天然的和化学修饰的碱性胰蛋白酶抑制剂的250兆赫1H核磁共振谱的低场部分,在pH值5 - 13范围内作为pH的函数进行了研究。在对14 - 38位胱氨酸进行选择性还原和羧甲基化的衍生物中,已确定了抑制剂四个酪氨酸芳香环16个质子中15个质子的共振峰,并将其归属于特定的酪氨酸残基。pH滴定得出修饰抑制剂中酪氨酸10、21、23和35的pK值分别为9.9、10.6、11.6和11.0。同样确定、归属并滴定了与单硝化衍生物的三个硝基酪氨酸10质子以及二硝化衍生物的六个硝基酪氨酸10和21质子相关的共振峰,得出硝基酪氨酸10和21的pK值分别为6.5和6.4。根据新数据对先前报道的14 - 38位胱氨酸完整的衍生物的结果进行了修订。将这些修订结果与14 - 38位胱氨酸修饰的衍生物的新数据进行比较,发现任何酪氨酸或硝基酪氨酸环的pK值没有变化,硝基酪氨酸21或酪氨酸21和23共振峰的化学位移也没有变化。然而,14 - 38位胱氨酸的修饰导致附近硝基酪氨酸10以及酪氨酸10和35环共振峰的化学位移发生显著变化。酪氨酸35相对不活跃,在25℃、pH值5 - 13范围内每秒旋转少于1600次。