4.7 Article

Influence of the polydispersity of pH 2 and pH 3.5 beta-lactoglobulin amyloid fibril solutions on analytical methods

期刊

EUROPEAN POLYMER JOURNAL
卷 120, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.eurpolymj.2019.08.038

关键词

Whey-protein; Beta-lactoglobulin; Amyloid aggregates; Fibrils; Worm-like fibrils; Building-blocks; Polydispersity; Superposition effects; AUC; SAXS

资金

  1. DFG (German Research Foundation) priority programme SPP 1934 DiSPBiotech [315456892, 315396049]
  2. NSF (National Science Foundation, US) [DMR-0520547]
  3. EU Horizon 2020 programme under the SINE2020 project [654000]

向作者/读者索取更多资源

It is well known that amyloid beta-lactoglobulin (BLG) fibril solutions contain a heterogeneous mixture of amyloid aggregates and non-amyloid material. However, few information are available on how strongly separated fractions of different morphologies (straight fibrils at pH 2 and worm-like aggregates at pH 3.5) vary with respect to physicochemical properties and building blocks as most analyses are conducted with unfractionized solutions where superposition effects occur. The pH-value shift resulted in an altered degree of acid hydrolysis which led to dissimilar building blocks of the aggregates (peptides at pH 2, non-hydrolyzed protein at pH 3.5). The respective separated amyloid and non-amyloid fractions showed significantly different size (SAXS, SEC, AUC) and charge properties (Zeta potential) than the whole samples. Strong superposition effects were evident with common analyses such as FTIR, TRP fluorescence and Thioflavin-T. At the same time, structural differences of pH 2 and pH 3.5 aggregates could be presented more clearly.

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