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Biophysical characterization data on Aβ soluble oligomers produced through a method enabling prolonged oligomer stability and biological buffer conditions

机译:通过可延长寡聚物稳定性和生物缓冲条件的方法生产的Aβ可溶性寡聚物的生物物理表征数据

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The data here consists of time-dependent experimental parameters from chemical and biophysical methods used to characterize Aβ monomeric reactants as well as soluble oligomer and amyloid fibril products from a slow (3–4 week) assembly reaction under biologically-relevant solvent conditions. The data of this reaction are both of a qualitative and quantitative nature, including gel images from chemical cross-linking and Western blots, fractional solubility, thioflavin T binding, size exclusion chromatograms, transmission electron microscopy images, circular dichroism spectra, and fluorescence resonance energy transfer efficiencies of donor–acceptor pair labels in the Aβ chain. This data enables future efforts to produce the initial monomer and eventual soluble oligomer and amyloid fibril states by providing reference benchmarks of these states pertaining to physical properties (solubility), ligand-binding (thioflavin T binding), mesoscopic structure (electron microscopy, size exclusion chromatography, cross-linking products, SDS and native gels) and molecular structure (circular dichroism, FRET donor-acceptor distance). Aβ1-40 soluble oligomers are produced that are suitable for biophysical studies requiring sufficient transient stability to exist in their “native” conformation in biological phosphate-saline buffers for extended periods of time. The production involves an initial preparation of highly monomeric Aβ in a phosphate saline buffer that transitions to fibrils and oligomers through time incubation alone, without added detergents or non-aqueous chemicals. This criteria ensures that the only difference between initial monomeric Aβ reactant and subsequent Aβ oligomer products is their degree of peptide assembly. A number of chemical and biophysical methods were used to characterize the monomeric reactants and soluble oligomer and amyloid fibril products, including chemical cross-linking, Western blots, fraction solubility, thioflvain T binding, size exclusion chromatography, transmission electron micrscopy, circular dichroism spectroscopy, and fluorescence resonance energy transfer.
机译:这里的数据包括化学和生物物理方法中随时间变化的实验参数,这些参数用于表征与生物相关的溶剂条件下缓慢(3-4周)组装反应中的Aβ单体反应物以及可溶性低聚物和淀粉样原纤维产物。该反应的数据具有定性和定量性质,包括来自化学交联和Western印迹的凝胶图像,分数溶解度,硫黄素T结合,尺寸排阻色谱图,透射电子显微镜图像,圆二色性光谱和荧光共振能Aβ链中供体-受体对标记的转移效率。通过提供与物理性质(溶解度),配体结合(硫黄素T结合),介观结构(电子显微镜,尺寸排阻)有关的这些状态的参考基准,该数据使未来的工作能够产生初始单体以及最终的可溶性低聚物和淀粉样原纤维状态。色谱,交联产物,SDS和天然凝胶)和分子结构(圆二色性,FRET供体-受体距离)。所生产的Aβ1-40可溶性低聚物适用于生物物理研究,需要在生物磷酸盐-盐缓冲液中以足够的瞬时稳定性存在于其“天然”构象中,并保持较长时间。该生产涉及在磷酸盐盐水缓冲液中初步制备高度单体的Aβ,该缓冲液仅通过时间孵育即可转变为原纤维和低聚物,而无需添加去污剂或非水化学品。该标准确保了初始单体Aβ反应物和后续Aβ低聚物产物之间的唯一区别是它们的肽组装程度。许多化学和生物物理方法用于表征单体反应物以及可溶性低聚物和淀粉样原纤维产物,包括化学交联,蛋白质印迹,级分溶解度,硫黄素T结合,尺寸排阻色谱,透射电子显微镜,圆二色光谱,和荧光共振能量转移。

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