Literature DB >> 27840125

Dopamine exacerbates mutant Huntingtin toxicity via oxidative-mediated inhibition of autophagy in SH-SY5Y neuroblastoma cells: Beneficial effects of anti-oxidant therapeutics.

Chiara Vidoni1, Andrea Castiglioni1, Christian Seca1, Eleonora Secomandi1, Mariarosa A B Melone2, Ciro Isidoro3.   

Abstract

Neuronal cell death in Huntington's Disease (HD) is associated with the abnormal expansions of a polyglutamine (polyQ) tract in the huntingtin protein (Htt) at the N-terminus that causes the misfolding and aggregation of the mutated protein (mHtt). Autophagy-lysosomal degradation of Htt aggregates may protect the neurons in HD. HD patients eventually manifest parkinsonian-like symptoms, which underlie defects in the dopaminergic system. We hypothesized that dopamine (DA) exacerbates the toxicity in affected neurons by over-inducing an oxidative stress that negatively impinges on the autophagy clearance of mHtt and thus precipitating neuronal cell death. Here we show that the hyper-expression of mutant (>113/150) polyQ Htt is per se toxic to dopaminergic human neuroblastoma SH-SY5Y cells, and that DA exacerbates this toxicity leading to apoptosis and secondary necrosis. DA toxicity is mediated by ROS production (mainly anion superoxide) that elicits a block in the formation of autophagosomes. We found that the pre-incubation with N-Acetyl-l-Cysteine (a quinone reductase inducer) or Deferoxamine (an iron chelator) prevents the generation of ROS, restores the autophagy degradation of mHtt and preserves the cell viability in SH-SY5Y cells expressing the polyQ Htt and exposed to DA. The present findings suggest that DA-induced impairment of autophagy underlies the parkinsonism in HD patients. Our data provide a mechanistic explanation of the DA toxicity in dopaminergic neurons expressing the mHtt and support the use of anti-oxidative stress therapeutics to restore protective autophagy in order to slow down the neurodegeneration in HD patients. Copyright Â
© 2016 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Anti-oxidant; Autophagy; Dopaminergic neurons; Huntington; Neurodegeneration; Parkinson

Mesh:

Substances:

Year:  2016        PMID: 27840125     DOI: 10.1016/j.neuint.2016.11.003

Source DB:  PubMed          Journal:  Neurochem Int        ISSN: 0197-0186            Impact factor:   3.921


  6 in total

Review 1.  Glucagon-like peptide 1 (GLP-1).

Authors:  T D Müller; B Finan; S R Bloom; D D'Alessio; D J Drucker; P R Flatt; A Fritsche; F Gribble; H J Grill; J F Habener; J J Holst; W Langhans; J J Meier; M A Nauck; D Perez-Tilve; A Pocai; F Reimann; D A Sandoval; T W Schwartz; R J Seeley; K Stemmer; M Tang-Christensen; S C Woods; R D DiMarchi; M H Tschöp
Journal:  Mol Metab       Date:  2019-09-30       Impact factor: 7.422

Review 2.  The Autophagy Signaling Pathway: A Potential Multifunctional Therapeutic Target of Curcumin in Neurological and Neuromuscular Diseases.

Authors:  Lorena Perrone; Tiziana Squillaro; Filomena Napolitano; Chiara Terracciano; Simone Sampaolo; Mariarosa Anna Beatrice Melone
Journal:  Nutrients       Date:  2019-08-13       Impact factor: 5.717

3.  New Synthetic 3-Benzoyl-5-Hydroxy-2H-Chromen-2-One (LM-031) Inhibits Polyglutamine Aggregation and Promotes Neurite Outgrowth through Enhancement of CREB, NRF2, and Reduction of AMPKα in SCA17 Cell Models.

Authors:  Chiung-Mei Chen; Wan-Ling Chen; Shu-Ting Yang; Te-Hsien Lin; Shu-Mei Yang; Wenwei Lin; Chih-Ying Chao; Yih-Ru Wu; Kuo-Hsuan Chang; Guey-Jen Lee-Chen
Journal:  Oxid Med Cell Longev       Date:  2020-04-22       Impact factor: 6.543

4.  GLP-1 Analogue Liraglutide Attenuates Mutant Huntingtin-Induced Neurotoxicity by Restoration of Neuronal Insulin Signaling.

Authors:  Ching-Chi Chang; Tzu-Chin Lin; Hsiao-Li Ho; Chien-Yin Kuo; Hsin-Hua Li; Tatiana A Korolenko; Wei-Jen Chen; Te-Jen Lai; Ying-Jui Ho; Chih-Li Lin
Journal:  Int J Mol Sci       Date:  2018-08-24       Impact factor: 5.923

5.  Harmine Acts as an Indirect Inhibitor of Intracellular Protein Aggregation.

Authors:  Swati Jain; Venkataharsha Panuganti; Sonali Jha; Ipsita Roy
Journal:  ACS Omega       Date:  2020-03-11

Review 6.  Nanoformulations to Enhance the Bioavailability and Physiological Functions of Polyphenols.

Authors:  Bingyan Yang; Yixin Dong; Fei Wang; Yu Zhang
Journal:  Molecules       Date:  2020-10-10       Impact factor: 4.411

  6 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.