Johnson Courtney N, Gorbet Gary E, Ramsower Heidi, Urquidi Julio, Brancaleon Lorenzo, Demeler Borries
Department of Biochemistry and Structural Biology, UTHSCSA, San Antonio, TX, USA.
Department of Physics and Astronomy, UTSA, San Antonio, TX, USA.
Eur Biophys J. 2018 Oct;47(7):789-797. doi: 10.1007/s00249-018-1301-7. Epub 2018 Apr 19.
The new Beckman Coulter Optima AUC instrument, which features multi-wavelength detection that couples the hydrodynamic separation of colloidal mixtures to spectral deconvolution of interacting and non-interacting solutes present in a mixture, was used to analyze the composition of human serum albumin (HSA) bound to metallo-protoporphyrin. We present new methods implemented in UltraScan that permit Optima AUC-derived multi-wavelength data to be spectrally decomposed in the same fashion as has been made possible for the Cölfen detector earlier. We demonstrate this approach by spectrally separating sedimentation velocity experimental data from mixtures of apo-HSA and HSA complexed to different metallo-protoporphyrins. We further demonstrate how multi-wavelength AUC can accurately recover percentages of metallo-protoporphyrin-bound HSA and apo-HSA from mixtures and how multi-wavelength AUC permits the calculation of molar extinction coefficients for porphyrins bound to HSA. The presented method has broad applicability to other complex systems where mixtures of molecules with different spectral properties need to be characterized.
新型贝克曼库尔特Optima AUC仪器具有多波长检测功能,它将胶体混合物的流体动力学分离与混合物中相互作用和非相互作用溶质的光谱去卷积相结合,用于分析与金属原卟啉结合的人血清白蛋白(HSA)的组成。我们展示了在UltraScan中实现的新方法,该方法允许以与早期Cölfen检测器相同的方式对Optima AUC衍生的多波长数据进行光谱分解。我们通过对脱辅基HSA和与不同金属原卟啉复合的HSA混合物的沉降速度实验数据进行光谱分离来证明这种方法。我们进一步证明了多波长AUC如何能够准确地从混合物中回收金属原卟啉结合的HSA和脱辅基HSA的百分比,以及多波长AUC如何允许计算与HSA结合的卟啉的摩尔消光系数。所提出的方法对其他需要表征具有不同光谱特性的分子混合物的复杂系统具有广泛的适用性。