St Pierre S, Gilardeau C, Chrétien M
Can J Biochem. 1976 Nov;54(11):992-8. doi: 10.1139/o76-143.
The far ultraviolet circular dichroism spectra of sheep beta-lipotropic hormone (beta-LPH) were recorded under different conditions of pH, temperature, salt concentration, and solvent composition. Results confirm the stability of the hormone in strong basic or acidic solutions; moreover, temperatures up to 50 degrees C do not seem to affect noticeably the conformation of beta-LPH. However, increasing the NaC1 concentration or addition of dioxane in the solution brings about a conformational transition of the chain, interpreted as an increase in the helical content. The method of Yang (Chen, Y.H., Yang, J. T. & Martinez, H. M. (1972) Biochemistry 11, 4120-4131) was used to compute the proportion of helical, beta, and unordered forms of the hormone chain. The proportions are compared with those obtained from Fasman's predictive method (Chou, P. Y & Fasman, G. D. (1974) Biochemistry 13, 211-221 and Chou, P. Y. & Fasman, G. D. (1974) Biochemistry 13, 222-245) based on the known amino acid sequence of beta-LPH.
在不同的pH值、温度、盐浓度和溶剂组成条件下,记录了绵羊β-促脂解素(β-LPH)的远紫外圆二色光谱。结果证实了该激素在强碱性或酸性溶液中的稳定性;此外,高达50摄氏度的温度似乎并未显著影响β-LPH的构象。然而,增加溶液中的NaCl浓度或添加二氧六环会导致链的构象转变,这被解释为螺旋含量的增加。采用Yang的方法(Chen, Y.H., Yang, J. T. & Martinez, H. M. (1972) Biochemistry 11, 4120 - 4131)来计算激素链中螺旋、β折叠和无规形式的比例。将这些比例与基于β-LPH已知氨基酸序列的Fasman预测方法(Chou, P. Y & Fasman, G. D. (1974) Biochemistry 13, 211 - 221和Chou, P. Y. & Fasman, G. D. (1974) Biochemistry 13, 222 - 245)所得到的比例进行比较。