Baenziger J E, Darsaut T E, Morris M L
Department of Biochemistry, Microbiology, and Immunology, University of Ottawa, Ontario, Canada.
Biochemistry. 1999 Apr 20;38(16):4905-11. doi: 10.1021/bi990181l.
The structure and 1H/2H exchange kinetics of affinity-purified nAChR reconstituted into egg phosphatidylcholine membranes with increasing levels of either dioleoylphosphatidic acid (DOPA) or cholesterol (Chol) have been examined using infrared spectroscopy. All spectra of the reconstituted nAChR membranes recorded after 72 h in 2H2O exhibit comparable amide I band shapes, suggesting a similar secondary structure for the nAChR in each lipid environment. Increasing levels of either DOPA or Chol, however, lead to an increasing intensity of the amide II band, indicating a decreasing proportion of nAChR peptide hydrogens that have exchanged for deuterium. Spectra recorded as a function of time after exposure of the nAChR to 2H2O show that the presence of either lipid slows down the 1H/2H exchange of those peptide hydrogens that normally exchange on the minutes to hours time scale. The slowing of peptide 1H/2H exchange correlates with both an increasing ability of the nAChR to undergo agonist-induced conformational change [Baenziger, J. E., Morris, M.-L., Darsaut, T. E., and Ryan, S. E. (1999) in preparation] and possibly a decreasing membrane fluidity. Our data suggest that lipid composition dependent changes in nAChR peptide 1H/2H exchange kinetics reflect altered internal dynamics of the nAChR. Lipids may influence protein function by changing the internal dynamics of integral membrane proteins.
利用红外光谱法研究了亲和纯化的烟碱型乙酰胆碱受体(nAChR)在含有不同水平的二油酰磷脂酸(DOPA)或胆固醇(Chol)的卵磷脂膜中重构后的结构及1H/2H交换动力学。在2H2O中孵育72小时后记录的所有重构nAChR膜的光谱均显示出类似的酰胺I带形状,这表明在每种脂质环境中nAChR具有相似的二级结构。然而,DOPA或Chol水平的增加会导致酰胺II带强度增加,这表明与氘交换的nAChR肽氢的比例降低。将nAChR暴露于2H2O后随时间记录的光谱表明,两种脂质的存在都会减缓那些通常在数分钟至数小时时间尺度上进行交换的肽氢的1H/2H交换。肽1H/2H交换的减慢与nAChR进行激动剂诱导的构象变化的能力增强[Baenziger, J. E., Morris, M.-L., Darsaut, T. E., and Ryan, S. E. (1999) in preparation]以及可能的膜流动性降低相关。我们的数据表明,nAChR肽1H/2H交换动力学中脂质组成依赖性变化反映了nAChR内部动力学的改变。脂质可能通过改变整合膜蛋白的内部动力学来影响蛋白质功能。