Ghirlanda Giovanna, Hilcove Simon A, Pidikiti Ravindernath, Johansson Jonas S, Lear James D, Degrado William F, Eckenhoff Roderic G
Department of Biophysics and Biochemistry, University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.
FEBS Lett. 2004 Dec 3;578(1-2):140-4. doi: 10.1016/j.febslet.2004.10.087.
To determine if occupancy of interfacial pockets in oligomeric proteins by volatile anesthetic molecules can allosterically regulate oligomerization equilibria, variants of a three-helix bundle peptide able to form higher oligomers were studied with analytical ultracentrifugation, hydrogen exchange and modeling. Halothane shifted the oligomerization equilibria towards the oligomer only in a mutation predicted to create sufficient volume in the hexameric pocket. Other mutations at this residue, predicted to create a too small or too polar pocket, were unaffected by halothane. Inhaled anesthetic modulation of oligomerization interactions is a novel and potentially generalizable biophysical basis for some anesthetic actions.
为了确定挥发性麻醉剂分子占据寡聚蛋白中的界面口袋是否能够变构调节寡聚平衡,我们通过分析超速离心、氢交换和建模研究了一种能够形成更高阶寡聚体的三螺旋束肽的变体。仅在预测会在六聚体口袋中产生足够空间的突变体中,氟烷才将寡聚平衡向寡聚体方向移动。该残基处的其他突变,预计会产生太小或太极性的口袋,不受氟烷影响。吸入麻醉剂对寡聚相互作用的调节是一些麻醉作用的一种新的且可能具有普遍性的生物物理基础。