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α- and β-Santalols Delay Aging in Caenorhabditis elegans via Preventing Oxidative Stress and Protein Aggregation

[Image: see text] α- and β-Santalol (santalol isomers) are the most abundant sesquiterpenoids found in sandalwood, contributing to its pleasant fragrance and wide-spectrum bioactivity. This study aimed at identifying the antiaging and antiaggregation mechanism of α- and β-santalol using the genetic...

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Autores principales: Mohankumar, Amirthalingam, Kalaiselvi, Duraisamy, Thiruppathi, Govindhan, Muthusaravanan, Sivaramakrishnan, Nivitha, Sundararaj, Levenson, Corey, Tawata, Shinkichi, Sundararaj, Palanisamy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7758982/
https://www.ncbi.nlm.nih.gov/pubmed/33376901
http://dx.doi.org/10.1021/acsomega.0c05006
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author Mohankumar, Amirthalingam
Kalaiselvi, Duraisamy
Thiruppathi, Govindhan
Muthusaravanan, Sivaramakrishnan
Nivitha, Sundararaj
Levenson, Corey
Tawata, Shinkichi
Sundararaj, Palanisamy
author_facet Mohankumar, Amirthalingam
Kalaiselvi, Duraisamy
Thiruppathi, Govindhan
Muthusaravanan, Sivaramakrishnan
Nivitha, Sundararaj
Levenson, Corey
Tawata, Shinkichi
Sundararaj, Palanisamy
author_sort Mohankumar, Amirthalingam
collection PubMed
description [Image: see text] α- and β-Santalol (santalol isomers) are the most abundant sesquiterpenoids found in sandalwood, contributing to its pleasant fragrance and wide-spectrum bioactivity. This study aimed at identifying the antiaging and antiaggregation mechanism of α- and β-santalol using the genetic tractability of an in vivo model Caenorhabditis elegans. The results showed that santalol isomers retard aging, improved health span, and inhibited the aggregation of toxic amyloid-β (Aβ(1–42)) and polyglutamine repeats (Q35, Q40, and HtnQ150) in C. elegans models for Alzheimer’s and Huntington’s disease, respectively. The genetic study, reporter gene expression, RNA-based reverse genetic approach (RNA interferences/RNAi), and gene expression analysis revealed that santalol isomers selectively regulate SKN-1/Nrf2 and EOR-1/PLZF transcription factors through the RTK/Ras/MAPK-dependent signaling axis that could trigger the expression of several antioxidants and protein aggregation inhibitory genes, viz., gst-4, gcs-1, gst-10, gsr-1, hsp-4, and skr-5, which extend longevity and help minimize age-induced protein oxidation and aggregation. We believe that these findings will further promote α- and β-santalol to become next-generation prolongevity and antiaggregation molecules for longer and healthier life.
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spelling pubmed-77589822020-12-28 α- and β-Santalols Delay Aging in Caenorhabditis elegans via Preventing Oxidative Stress and Protein Aggregation Mohankumar, Amirthalingam Kalaiselvi, Duraisamy Thiruppathi, Govindhan Muthusaravanan, Sivaramakrishnan Nivitha, Sundararaj Levenson, Corey Tawata, Shinkichi Sundararaj, Palanisamy ACS Omega [Image: see text] α- and β-Santalol (santalol isomers) are the most abundant sesquiterpenoids found in sandalwood, contributing to its pleasant fragrance and wide-spectrum bioactivity. This study aimed at identifying the antiaging and antiaggregation mechanism of α- and β-santalol using the genetic tractability of an in vivo model Caenorhabditis elegans. The results showed that santalol isomers retard aging, improved health span, and inhibited the aggregation of toxic amyloid-β (Aβ(1–42)) and polyglutamine repeats (Q35, Q40, and HtnQ150) in C. elegans models for Alzheimer’s and Huntington’s disease, respectively. The genetic study, reporter gene expression, RNA-based reverse genetic approach (RNA interferences/RNAi), and gene expression analysis revealed that santalol isomers selectively regulate SKN-1/Nrf2 and EOR-1/PLZF transcription factors through the RTK/Ras/MAPK-dependent signaling axis that could trigger the expression of several antioxidants and protein aggregation inhibitory genes, viz., gst-4, gcs-1, gst-10, gsr-1, hsp-4, and skr-5, which extend longevity and help minimize age-induced protein oxidation and aggregation. We believe that these findings will further promote α- and β-santalol to become next-generation prolongevity and antiaggregation molecules for longer and healthier life. American Chemical Society 2020-12-10 /pmc/articles/PMC7758982/ /pubmed/33376901 http://dx.doi.org/10.1021/acsomega.0c05006 Text en © 2020 American Chemical Society This is an open access article published under a Creative Commons Non-Commercial No Derivative Works (CC-BY-NC-ND) Attribution License (http://pubs.acs.org/page/policy/authorchoice_ccbyncnd_termsofuse.html) , which permits copying and redistribution of the article, and creation of adaptations, all for non-commercial purposes.
spellingShingle Mohankumar, Amirthalingam
Kalaiselvi, Duraisamy
Thiruppathi, Govindhan
Muthusaravanan, Sivaramakrishnan
Nivitha, Sundararaj
Levenson, Corey
Tawata, Shinkichi
Sundararaj, Palanisamy
α- and β-Santalols Delay Aging in Caenorhabditis elegans via Preventing Oxidative Stress and Protein Aggregation
title α- and β-Santalols Delay Aging in Caenorhabditis elegans via Preventing Oxidative Stress and Protein Aggregation
title_full α- and β-Santalols Delay Aging in Caenorhabditis elegans via Preventing Oxidative Stress and Protein Aggregation
title_fullStr α- and β-Santalols Delay Aging in Caenorhabditis elegans via Preventing Oxidative Stress and Protein Aggregation
title_full_unstemmed α- and β-Santalols Delay Aging in Caenorhabditis elegans via Preventing Oxidative Stress and Protein Aggregation
title_short α- and β-Santalols Delay Aging in Caenorhabditis elegans via Preventing Oxidative Stress and Protein Aggregation
title_sort α- and β-santalols delay aging in caenorhabditis elegans via preventing oxidative stress and protein aggregation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7758982/
https://www.ncbi.nlm.nih.gov/pubmed/33376901
http://dx.doi.org/10.1021/acsomega.0c05006
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