Newstadt Justin P, Mayo Daniel J, Inbaraj Johnson J, Subbaraman Nidhi, Lorigan Gary A
Department of Chemistry and Biochemistry, Miami University of Ohio, Room 137, Hughes Laboratories, Oxford, OH 45056-1465, USA.
J Magn Reson. 2009 May;198(1):1-7. doi: 10.1016/j.jmr.2008.12.007. Epub 2008 Dec 14.
Theoretical calculations of hyperfine splitting values derived from the EPR spectra of TOAC spin-labeled rigid aligned alpha-helical membrane peptides reveal a unique periodic variation. In the absence of helical motion, a plot of the corresponding hyperfine splitting values as a function of residue number results in a sinusoidal curve that depends on the helical tilt angle that the peptide makes with respect to the magnetic field. Motion about the long helical axis reduces the amplitude of the curve and averages out the corresponding hyperfine splitting values. The corresponding spectra can be used to determine the director axis tilt angle from the TOAC spin label, which can be used to calculate the helical tilt angle due to the rigidity of the TOAC spin label. Additionally, this paper describes a method to experimentally determine this helical tilt angle from the hyperfine splitting values of three consecutive residues.
从TOAC自旋标记的刚性排列α-螺旋膜肽的电子顺磁共振光谱得出的超精细分裂值的理论计算揭示了一种独特的周期性变化。在没有螺旋运动的情况下,将相应的超精细分裂值作为残基编号的函数绘制,会得到一条正弦曲线,该曲线取决于肽相对于磁场的螺旋倾斜角。围绕长螺旋轴的运动会减小曲线的幅度,并使相应的超精细分裂值平均化。相应的光谱可用于从TOAC自旋标记确定指向矢轴倾斜角,由于TOAC自旋标记的刚性,该角度可用于计算螺旋倾斜角。此外,本文描述了一种从三个连续残基的超精细分裂值通过实验确定该螺旋倾斜角的方法。