Pörschke D
Max-Planck-Institut für biophysikalische Chemie, Göttingen, F.R.G.
Biophys Chem. 1987 Nov;28(2):137-47. doi: 10.1016/0301-4622(87)80083-2.
Lac repressor and its tryptic core have been investigated by electro-optical methods. The reduced dichroism measured as a function of the electric field strength is not consistent with an induced dipole, but indicates the existence of a strong permanent dipole moment (approximately 4 X 10(-27) C m) for the holo-repressor, which is almost independent of ion concentration and pH. A dominant contribution of a permanent dipole is also demonstrated by the shape of the dichroism rise curve. The experimental data are not consistent with a counterion polarization phenomenon and also do not indicate a major contribution from proton fluctuations. Probably the nature of the dipole is similar to that found for compounds with a tetrahedral substitution by angular residues. Other potential models involve large conformational fluctuations or inherent asymmetry of the lac repressor. Rotation time constants obtained from the dichroism decay are not consistent with a spherical shape, for either the holo- or core repressor. A simple interpretation of the data by prolate ellipsoids suggests a short diameter of 6 nm for both holo- and core repressor and long diameters of 14 and 12 nm for holo- and core repressor, respectively. Addition of the inducer isopropyl-beta-D-thiogalactopyranoside leads to a change of the limit dichroism, but does not affect the rotation time constants within experimental accuracy.
已通过电光方法对乳糖阻遏物及其胰蛋白酶核心进行了研究。作为电场强度函数测量的减色二向色性与诱导偶极不一致,但表明全阻遏物存在强永久偶极矩(约4×10⁻²⁷ C m),该偶极矩几乎与离子浓度和pH无关。二向色性上升曲线的形状也证明了永久偶极的主要贡献。实验数据与反离子极化现象不一致,也未表明质子涨落有主要贡献。偶极的性质可能与由角形残基进行四面体取代的化合物中发现的类似。其他潜在模型涉及乳糖阻遏物的大构象涨落或固有不对称性。从二向色性衰减获得的旋转时间常数与全阻遏物或核心阻遏物的球形形状不一致。通过长椭球体对数据进行的简单解释表明,全阻遏物和核心阻遏物的短直径均为6 nm,全阻遏物和核心阻遏物的长直径分别为14 nm和12 nm。添加诱导剂异丙基-β-D-硫代半乳糖苷会导致极限二向色性发生变化,但在实验精度范围内不影响旋转时间常数。