کد مقاله کد نشریه سال انتشار مقاله انگلیسی نسخه تمام متن
29593 44422 2016 12 صفحه PDF دانلود رایگان
عنوان انگلیسی مقاله ISI
Interaction of the ginsenosides with κ-casein and their effects on amyloid fibril formation by the protein: Multi-spectroscopic approaches
ترجمه فارسی عنوان
تعامل ژینزنوزید ها با یوکسیازین و اثرات آن بر شکل گیری فیبرهای آمیلوئید توسط پروتئین: رویکردهای چند اسپکتروسکوپی
موضوعات مرتبط
مهندسی و علوم پایه مهندسی شیمی بیو مهندسی (مهندسی زیستی)
چکیده انگلیسی


• Rg1 and Rb1 had the dose-dependent inhibitory effects on RCMκ-CN fibril formation.
• The enhancement in RLS intensity was attributed to the formation of RCMκ-CN–GS complex.
• Binding of GS with RCMκ-CN led to conformational changes within the protein.
• GS bound to RCMκ-CN via intermolecular hydrophobic forces.
• According to FRET, the binding distance between RCMκ-CN Trp97 residue and GS was calculated.

The interaction of the ginsenosides (GS) including ginsenoside Rg1, Rb1 and Re with κ-casein and the effects of GS inhibiting amyloid fibril formation by κ-casein have been investigated in vitro by fluorescence and ultraviolet spectra. Results showed that Rg1 and Rb1 had dose-dependent inhibitory effects on reduced and carboxymethylated κ-casein (RCMκ-CN) fibril formation, while Re resulted in an increase in the rate of fibril formation. The enhancement in RLS intensity was attributed to the formation of new complex between GS and RCMκ-CN, and the corresponding thermodynamic parameters (ΔH, ΔS and ΔG) were assayed. The steady-state ultraviolet–visible absorption spectra had also been tested to observe if the ground-state complex formed, and it showed the same result as RLS spectra. The binding constants and the number of binding sites between GS and RCMκ-CN at different temperatures had been evaluated from relevant fluorescence data. According to the Förster non-radiation energy transfer theory, the binding distance between RCMκ-CN and GS was calculated. The fluorescence lifetime of RCMκ-CN was longer in the presence of GS than in absence of GS, which was evident that the hydrophobic interaction plays a major role in the binding of GS to RCMκ-CN. From the results of synchronous fluorescence, it could be deduced that the polarity around RCMκ-CN Trp97 residue decreased and the hydrophobicity increased after addition of Rg1 or Rb1. Based on all the above results, it is explained that Rg1 and Rb1 inhibited amyloid fibril formation by κ-casein because the molecular spatial conformation and physical property of κ-casein changed causing by the complex formation between GS and κ-casein.

ناشر
Database: Elsevier - ScienceDirect (ساینس دایرکت)
Journal: Journal of Photochemistry and Photobiology B: Biology - Volume 160, July 2016, Pages 306–317
نویسندگان
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