Sherebrin M H, MacClement B A, Franko A J
Biophys J. 1972 Aug;12(8):977-89. doi: 10.1016/S0006-3495(72)86138-1.
Difference spectra between resting and excited nerve in the infrared region between 2000 and 1000 cm(-1) have been examined with a resolution of 0.5 cm(-1). Spectra were obtained with a modified Perkin-Elmer model 521 grating infrared spectrophotometer (Perkin-Elmer Corp., Instrument Div., Norwalk, Conn.), and the signal-to-noise (S/N) ratio was improved by time averaging and digital smoothing. Peaks occurring in the regions around 1030 and 1066 cm(-1) are identified as P-O-C stretch, at 1410-1414 cm(-1) as C-H deformation, and at 1750 cm(-1) as carbonyl stretch. The difference peaks appear to be due to a shift of about 1 cm(-1) in the absorption band to lower frequencies for the three lower frequency bands and to a higher frequency for 1750 cm(-1) band. Since the difference peaks appear when the nerve is modulated by a propagated action potential it is concluded that the changing electrical field across the nerve membrane is perturbing the absorption spectrum. From evidence presented it appears likely that these difference peaks are due to phospholipids in the nerve membrane and that they may be related to conformational changes associated with membrane permeability.
已使用分辨率为0.5 cm⁻¹的仪器,检测了2000至1000 cm⁻¹红外区域内静息神经与兴奋神经之间的差示光谱。光谱由一台经过改装的珀金埃尔默521型光栅红外分光光度计(珀金埃尔默公司,仪器部,康涅狄格州诺沃克)获得,通过时间平均和数字平滑处理提高了信噪比。在1030和1066 cm⁻¹附近区域出现的峰被确定为P - O - C伸缩振动,在1410 - 1414 cm⁻¹处为C - H变形振动,在1750 cm⁻¹处为羰基伸缩振动。差示峰似乎是由于三个低频带的吸收带向较低频率移动了约1 cm⁻¹,而1750 cm⁻¹带向较高频率移动所致。由于当神经受到传播的动作电位调制时出现差示峰,因此可以得出结论,跨神经膜变化的电场正在扰动吸收光谱。根据所提供的证据,这些差示峰似乎是由于神经膜中的磷脂引起的,并且它们可能与与膜通透性相关的构象变化有关。