Institute of Physics, University of Tartu, Wilhelm Ostwald str. 1, 50411 Tartu, Estonia.
Humboldt-Universität zu Berlin, Philippstr. 13, 10115 Berlin, Germany.
J Phys Chem B. 2022 Apr 21;126(15):2824-2833. doi: 10.1021/acs.jpcb.2c01591. Epub 2022 Apr 6.
Photosystems I (PSI) and II (PSII) are pigment-protein complexes capable of performing the light-induced charge separation necessary to convert solar energy into a biochemically storable form, an essential step in photosynthesis. Small-angle neutron scattering (SANS) is unique in providing structural information on PSI and PSII in solution under nearly physiological conditions without the need for crystallization or temperature decrease. We show that the reliability of the solution structure critically depends on proper contrast matching of the detergent belt surrounding the protein. Especially, specifically deuterated ("invisible") detergents are shown to be properly matched out in SANS experiments by a direct, quantitative comparison with conventional matching strategies. In contrast, protonated detergents necessarily exhibit incomplete matching so that related SANS results systematically overestimate the size of the membrane protein under study. While the solution structures obtained are close to corresponding high-resolution structures, we show that temperature and solution state lead to individual structural differences compared with high-resolution structures. We attribute these differences to the presence of a manifold of conformational substates accessible by protein dynamics under physiological conditions.
光系统 I(PSI)和 II(PSII)是能够进行光诱导电荷分离的色素-蛋白复合物,这是将太阳能转化为可生物储存形式的必要步骤,是光合作用的关键步骤。小角中子散射(SANS)在无需结晶或降低温度的情况下,独特地提供了近生理条件下PSI 和 PSII 在溶液中的结构信息。我们表明,蛋白质周围去污剂带的适当对比匹配对溶液结构的可靠性至关重要。特别是,通过与传统匹配策略的直接、定量比较,表明专门氘代(“不可见”)去污剂在 SANS 实验中得到了适当的匹配。相比之下,质子化的去污剂必然表现出不完全的匹配,因此相关的 SANS 结果会系统地高估所研究的膜蛋白的大小。虽然所得到的溶液结构与相应的高分辨率结构接近,但我们表明,温度和溶液状态与高分辨率结构相比会导致个体结构差异。我们将这些差异归因于蛋白质动力学在生理条件下可获得的多种构象亚稳态的存在。