Bordignon Enrica, Klare Johann P, Holterhues Julia, Martell Swetlana, Krasnaberski Aliaksei, Engelhard Martin, Steinhoff Heinz-Jürgen
Fachbereich Physik, Universität Osnabrück, Osnabrück, Germany.
Photochem Photobiol. 2007 Mar-Apr;83(2):263-72. doi: 10.1562/2006-07-05-RA-960.
The nature and kinetics of the conformational changes leading to the activated state of NpSRII/NpHtrII157 were investigated by time-resolved electron paramagnetic resonance (TR-EPR) spectroscopy in combination with site-directed spin labeling (SDSL) on a series of spin labeled mutants of NpSRII. A structural rearrangement of the cytoplasmic moiety of NpSRII upon light activation was detected (helices B, C, F and G). The increase in distance between helices C and F in the M-trapped state of the complex observed in one double mutant is in line with the notion that an outward movement of helix F occurs upon receptor activation. The data obtained from the NpSRII/NpHtrII157 complex reconstituted in purple membrane lipids are compared with those obtained from the X-ray structure of the late M-state of the complex which shows some discrepancies. The results are discussed in the context also of other biophysical and EPR experimental evidences.
通过时间分辨电子顺磁共振(TR-EPR)光谱结合定点自旋标记(SDSL)技术,对一系列NpSRII自旋标记突变体进行研究,以探究导致NpSRII/NpHtrII157激活状态的构象变化的性质和动力学。检测到光激活后NpSRII胞质部分的结构重排(螺旋B、C、F和G)。在一个双突变体中观察到复合物处于M捕获状态时螺旋C和F之间距离增加,这与受体激活时螺旋F向外移动的观点一致。将在紫色膜脂质中重组的NpSRII/NpHtrII157复合物获得的数据与该复合物晚期M态的X射线结构获得的数据进行比较,结果显示存在一些差异。还结合其他生物物理和EPR实验证据对结果进行了讨论。