Literature DB >> 25851110

Resveratrol reduces amyloid-beta (Aβ₁₋₄₂)-induced paralysis through targeting proteostasis in an Alzheimer model of Caenorhabditis elegans.

Charlotte Regitz1, Elena Fitzenberger1, Friederike Luise Mahn1, Lisa Marie Dußling1, Uwe Wenzel2.   

Abstract

PURPOSE: Resveratrol is a polyphenol present in red wine for which the capability of directly interfering with the hallmark of Alzheimer's disease (AD), i.e. toxic β-amyloid protein (Aβ) aggregation, has been shown recently. Since the stimulation of proteostasis could explain reduced Aβ-aggregation, we searched for proteostasis targets of resveratrol.
METHODS: The transgenic Caenorhabditis elegans strain CL2006, expressing Aβ1-42 under control of a muscle-specific promoter and responding to Aβ-toxicity with paralysis, was used as a model. Target identification was accomplished through specific knockdowns of proteostasis genes by RNA interference. Effects of resveratrol on protein aggregation were identified using ProteoStat(®) Detection Reagent, and activation of proteasomal degradation by resveratrol was finally proven using a specific fluorogenic peptide substrate.
RESULTS: Resveratrol at a concentration of 100 µM caused a 40 % decrease in paralysis. UBL-5 involved in unfolded protein response (UPR) in mitochondria proved to be necessary for the prevention of Aβ-toxicity by resveratrol. Also XBP-1, which represents an endoplasmic reticulum-resident factor involved in UPR, was identified to be necessary for the effects of resveratrol. Regarding protein degradation pathways, the inhibition of macroautophagy and chaperone-mediated autophagy prevented resveratrol from reducing paralysis as did the inhibition of proteasomal degradation. Finally, resveratrol reduced the amount of lysosomes, suggesting increased flux of proteins through the autophagy pathways and activated proteasomal degradation.
CONCLUSIONS: Resveratrol reduces the Aβ-induced toxicity in a C. elegans model of AD by targeting specific proteins involved in proteostasis and thereby reduces the amount of aggregated Aβ.

Entities:  

Keywords:  Amyloid-β peptide; Autophagy; Caenorhabditis elegans; Proteasome; Resveratrol; Unfolded protein response

Mesh:

Substances:

Year:  2015        PMID: 25851110     DOI: 10.1007/s00394-015-0894-1

Source DB:  PubMed          Journal:  Eur J Nutr        ISSN: 1436-6207            Impact factor:   5.614


  31 in total

1.  RNAi screens in Caenorhabditis elegans in a 96-well liquid format and their application to the systematic identification of genetic interactions.

Authors:  Ben Lehner; Julia Tischler; Andrew G Fraser
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2.  Mitochondrial stress signaling: a pathway unfolds.

Authors:  Sarah A Broadley; F Ulrich Hartl
Journal:  Trends Cell Biol       Date:  2007-12-18       Impact factor: 20.808

Review 3.  Alzheimer's disease.

Authors:  Henry W Querfurth; Frank M LaFerla
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Review 4.  Therapeutic approaches against common structural features of toxic oligomers shared by multiple amyloidogenic proteins.

Authors:  Marcos J Guerrero-Muñoz; Diana L Castillo-Carranza; Rakez Kayed
Journal:  Biochem Pharmacol       Date:  2014-01-07       Impact factor: 5.858

Review 5.  Intraneuronal β-amyloid and its interactions with proteins and subcellular organelles.

Authors:  Botond Penke; Anikó M Tóth; István Földi; Mária Szűcs; Tamás Janáky
Journal:  Electrophoresis       Date:  2012-11-22       Impact factor: 3.535

6.  Anthocyanins in aged blueberry-fed rats are found centrally and may enhance memory.

Authors:  Cristina Andres-Lacueva; Barbara Shukitt-Hale; Rachel L Galli; Olga Jauregui; Rosa M Lamuela-Raventos; James A Joseph
Journal:  Nutr Neurosci       Date:  2005-04       Impact factor: 4.994

7.  Repeat dose study of the cancer chemopreventive agent resveratrol in healthy volunteers: safety, pharmacokinetics, and effect on the insulin-like growth factor axis.

Authors:  Victoria A Brown; Ketan R Patel; Maria Viskaduraki; James A Crowell; Marjorie Perloff; Tristan D Booth; Grygoriy Vasilinin; Ananda Sen; Anna Maria Schinas; Gianfranca Piccirilli; Karen Brown; William P Steward; Andreas J Gescher; Dean E Brenner
Journal:  Cancer Res       Date:  2010-10-08       Impact factor: 12.701

Review 8.  Dietary polyphenol-derived protection against neurotoxic β-amyloid protein: from molecular to clinical.

Authors:  Scott D Smid; Jesper L Maag; Ian F Musgrave
Journal:  Food Funct       Date:  2012-12       Impact factor: 5.396

9.  The genetics of Caenorhabditis elegans.

Authors:  S Brenner
Journal:  Genetics       Date:  1974-05       Impact factor: 4.562

10.  Temporal requirements of insulin/IGF-1 signaling for proteotoxicity protection.

Authors:  Ehud Cohen; Deguo Du; Derek Joyce; Erik A Kapernick; Yuli Volovik; Jeffery W Kelly; Andrew Dillin
Journal:  Aging Cell       Date:  2009-12-11       Impact factor: 9.304

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  39 in total

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2.  The transcription factor XBP1 in memory and cognition: Implications in Alzheimer disease.

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Journal:  Mol Med       Date:  2017-01-04       Impact factor: 6.354

3.  Resveratrol Induces Brain Resilience Against Alzheimer Neurodegeneration Through Proteostasis Enhancement.

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4.  The proteasome as a druggable target with multiple therapeutic potentialities: Cutting and non-cutting edges.

Authors:  G R Tundo; D Sbardella; A M Santoro; A Coletta; F Oddone; G Grasso; D Milardi; P M Lacal; S Marini; R Purrello; G Graziani; M Coletta
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5.  Metformin Attenuates Aβ Pathology Mediated Through Levamisole Sensitive Nicotinic Acetylcholine Receptors in a C. elegans Model of Alzheimer's Disease.

Authors:  Waqar Ahmad; Paul R Ebert
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6.  Compounds that extend longevity are protective in neurodegenerative diseases and provide a novel treatment strategy for these devastating disorders.

Authors:  Sonja K Soo; Paige D Rudich; Annika Traa; Namasthée Harris-Gauthier; Hazel J Shields; Jeremy M Van Raamsdonk
Journal:  Mech Ageing Dev       Date:  2020-06-28       Impact factor: 5.432

Review 7.  Resveratrol and neuroprotection: an insight into prospective therapeutic approaches against Alzheimer's disease from bench to bedside.

Authors:  Fahadul Islam; Mohamed H Nafady; Md Rezaul Islam; Susmita Saha; Salma Rashid; Aklima Akter; Md Harun- Or-Rashid; Muhammad Furqan Akhtar; Asma Perveen; Ghulam Md Ashraf; Md Habibur Rahman; Sherouk Hussein Sweilam
Journal:  Mol Neurobiol       Date:  2022-05-12       Impact factor: 5.590

8.  18α-Glycyrrhetinic Acid Proteasome Activator Decelerates Aging and Alzheimer's Disease Progression in Caenorhabditis elegans and Neuronal Cultures.

Authors:  Nikoletta Papaevgeniou; Marianthi Sakellari; Sweta Jha; Nektarios Tavernarakis; Carina I Holmberg; Efstathios S Gonos; Niki Chondrogianni
Journal:  Antioxid Redox Signal       Date:  2016-03-30       Impact factor: 8.401

Review 9.  Amyloid Oligomers: A Joint Experimental/Computational Perspective on Alzheimer's Disease, Parkinson's Disease, Type II Diabetes, and Amyotrophic Lateral Sclerosis.

Authors:  Phuong H Nguyen; Ayyalusamy Ramamoorthy; Bikash R Sahoo; Jie Zheng; Peter Faller; John E Straub; Laura Dominguez; Joan-Emma Shea; Nikolay V Dokholyan; Alfonso De Simone; Buyong Ma; Ruth Nussinov; Saeed Najafi; Son Tung Ngo; Antoine Loquet; Mara Chiricotto; Pritam Ganguly; James McCarty; Mai Suan Li; Carol Hall; Yiming Wang; Yifat Miller; Simone Melchionna; Birgit Habenstein; Stepan Timr; Jiaxing Chen; Brianna Hnath; Birgit Strodel; Rakez Kayed; Sylvain Lesné; Guanghong Wei; Fabio Sterpone; Andrew J Doig; Philippe Derreumaux
Journal:  Chem Rev       Date:  2021-02-05       Impact factor: 60.622

10.  Structural and mechanistic insights into amyloid-β and α-synuclein fibril formation and polyphenol inhibitor efficacy in phospholipid bilayers.

Authors:  Henry M Sanders; Blagojce Jovcevski; Michael T Marty; Tara L Pukala
Journal:  FEBS J       Date:  2021-07-26       Impact factor: 5.542

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