Makarov A A, Protasevich I I, Kuznetsova N V, Fedorov B B, Korolev S V, Struminskaya N K, Bazhulina N P, Leshchinskaya I B, Hartley R W, Kirpichnikov M P
Engelhardt Institute of Molecular Biology, Acad. Sci. Russia, Moscow.
J Biomol Struct Dyn. 1993 Jun;10(6):1047-65. doi: 10.1080/07391102.1993.10508695.
Parameters of heat denaturation and intrinsic fluorescence of barnase and its close homologue, binase in the pH region 2-6 have been determined. The barnase heat denaturation (pH 2.8-5.5) proceeds according to the "all-or-none" principle. Barnase denaturation temperature is lower than that of binase and this difference increases from 2.5 degrees C at pH 5 to 7 degrees C at pH 3. Enthalpy values of barnase and binase denaturation coincide only at pH 4.5-5.5, but as far as pH decreases the barnase denaturation enthalpy decreases significantly and in this respect it differs from binase. The fluorescence and CD techniques do not reveal any distinctions in the local environment of aromatic residues in the two proteins, and the obtained difference in the parameters of intrinsic fluorescence is due to fluorescence quenching of the barnase Trp94 by the His 18 residue, absent in binase. Secondary structures of both native and denaturated proteins also do not differ. Some differences in the barnase and binase electrostatic characteristics, revealed in the character of the dipole moments distribution, have been found.
已测定了pH值在2至6范围内巴纳酶及其紧密同源物比纳酶的热变性参数和固有荧光。巴纳酶的热变性(pH 2.8至5.5)遵循“全或无”原则。巴纳酶的变性温度低于比纳酶,且这种差异从pH 5时的2.5℃增加到pH 3时的7℃。巴纳酶和比纳酶变性的焓值仅在pH 4.5至5.5时一致,但随着pH降低,巴纳酶变性焓显著降低,在这方面它与比纳酶不同。荧光和圆二色技术未揭示两种蛋白质中芳香族残基局部环境的任何差异,所获得的固有荧光参数差异是由于巴纳酶的色氨酸94被组氨酸18残基淬灭荧光所致,而比纳酶中不存在该残基。天然和变性蛋白质的二级结构也没有差异。已发现巴纳酶和比纳酶在偶极矩分布特征方面所揭示的静电特性存在一些差异。