Department of Chemistry and Molecular Biology , University of Gothenburg , Kemigården 4 , 412 96 Gothenburg , Sweden.
Department of Biochemistry and Structural Biology , Lund University , P.O. Box 124, 221 00 Lund , Sweden.
Anal Chem. 2020 Feb 4;92(3):2620-2627. doi: 10.1021/acs.analchem.9b04490. Epub 2020 Jan 21.
Changes in the tertiary conformation of adsorbed biomolecules can induce detectable shifts (Δθ) in the surface plasmon resonance (SPR) angle. Here it is shown how to calculate the corresponding shifts in the adsorbate's center of mass (Δ) along the sensing surface normal from the measured Δθ. The novel developed model was used for determining the mean distance between the cytochrome (CYT) and flavodehydrogenase (DH) domains of the enzyme cellobiose dehydrogenase (CDH) isolated from the fungi , , and as a function of pH, [Ca], and substrate concentration. SPR confirmed the results from earlier electrochemical and SAXS studies stating that the closed conformation, where the two domains are in close vicinity, is stabilized by a lower pH and an increased [Ca]. Interestingly, an increasing substrate concentration in the absence of any electron acceptors stabilizes the open conformation as the electrostatic repulsion due to the reaped electrons pushes the DH and CYT domains apart. The accuracy of distance determination was limited mostly by the random fluctuations between replicate measurements, and it was possible to detect movements <1 nm of the domains with respect to each other. The results agreed with calculations using already established models treating conformational changes as contraction or expansion of the thickness of the adsorbate layer (). Although the models yielded equivalent results, in this case, the Δ-based method also works in situations, where the adsorbate's mass is not evenly distributed within the layer.
吸附生物分子的三级构象变化会导致表面等离子体共振(SPR)角发生可检测的位移(Δθ)。本文介绍了如何根据测量的Δθ,从沿传感表面法线的吸附质质心(Δ)计算出相应的位移。所开发的新模型用于确定从真菌中分离出的细胞二糖脱氢酶(CDH)的细胞色素(CYT)和黄素脱氢酶(DH)结构域之间的平均距离作为 pH 值、[Ca] 和底物浓度的函数。SPR 证实了早期电化学和 SAXS 研究的结果,即两个结构域非常接近的封闭构象通过较低的 pH 值和增加的[Ca] 得到稳定。有趣的是,在没有任何电子受体的情况下增加底物浓度会稳定开放构象,因为由于收获的电子产生的静电排斥会将 DH 和 CYT 结构域推开。距离确定的准确性主要受重复测量之间随机波动的限制,并且可以检测到相对于彼此的域的 <1nm 运动。结果与使用已经建立的模型的计算结果一致,这些模型将构象变化视为吸附层厚度的收缩或膨胀()。尽管这些模型产生了等效的结果,但在这种情况下,基于Δ的方法也适用于吸附质质量在层内不均匀分布的情况。