Ricchelli F, Jori G, Filippi B, Boteva R, Shopova M, Genov N
Biochem J. 1982 Nov 1;207(2):201-5. doi: 10.1042/bj2070201.
Subtilisin DY is very resistant to the denaturing action of urea: the conformational properties are not affected up to 4.5 M-urea, and even in the presence of 8 M-urea there is only a slow loss of ordered structure and caseinolytic activity. C.d. and fluorescence-emission studies also show that this proteinase is stable in the 5.5-10.0 pH range, whereas below pH 5.5 a sharp denaturation occurs that is complete at pH 4.5. Protein denaturation leads to a change of the emission quantum yield; in particular, in the native protein, indole fluorescence is quenched by some amino groups. Moreover, subtilisin DY possesses two classes of tyrosine residues: one class of exposed residues titrates normally, with pKapp. = 10.24, whereas one class of partially buried or hydrogen-bonded residues ionizes with pKapp. = 11.58. In general, such conformational properties resemble those of other subtilisins. However, some differences occur: e.g., subtilisin DY is less stable at acidic pH values and its tyrosine residues are more accessible to the solvent. Such differences are probably due to small variations of the three-dimensional structure; e.g., subtilisin DY has a slightly lower alpha-helix content.
枯草杆菌蛋白酶DY对尿素的变性作用具有很强的抗性:在高达4.5M尿素的情况下,其构象性质不受影响,甚至在8M尿素存在时,有序结构和酪蛋白水解活性也只是缓慢丧失。圆二色性和荧光发射研究还表明,这种蛋白酶在pH 5.5 - 10.0范围内稳定,而在pH 5.5以下会发生急剧变性,在pH 4.5时完全变性。蛋白质变性导致发射量子产率发生变化;特别是在天然蛋白质中,吲哚荧光被一些氨基淬灭。此外,枯草杆菌蛋白酶DY有两类酪氨酸残基:一类暴露的残基正常滴定,表观pK值为10.24,而一类部分埋藏或形成氢键的残基的电离表观pK值为11.58。一般来说,这种构象性质与其他枯草杆菌蛋白酶相似。然而,也存在一些差异:例如,枯草杆菌蛋白酶DY在酸性pH值下稳定性较差,其酪氨酸残基更容易与溶剂接触。这种差异可能是由于三维结构的微小变化;例如,枯草杆菌蛋白酶DY的α-螺旋含量略低。