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MITOCHONDRIAL-DERIVED PEPTIDE, SHLP2, A NOVEL PROTECTIVE FACTOR IN PARKINSON’S DISEASE

Mitochondrial DNA (mtDNA) variants are associated with a wide range of diseases of aging, from diabetes to Alzheimer’s, as well as with longevity itself. However, to date, little work has thoroughly examined the functional roles of mtDNA variants in such age-related diseases or the therapeutic poten...

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Autores principales: Kim, Su Jeong, Devgan, Anjali, Mehta, Hemal H, Cohen, Pinchas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6845510/
http://dx.doi.org/10.1093/geroni/igz038.3088
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author Kim, Su Jeong
Devgan, Anjali
Mehta, Hemal H
Cohen, Pinchas
author_facet Kim, Su Jeong
Devgan, Anjali
Mehta, Hemal H
Cohen, Pinchas
author_sort Kim, Su Jeong
collection PubMed
description Mitochondrial DNA (mtDNA) variants are associated with a wide range of diseases of aging, from diabetes to Alzheimer’s, as well as with longevity itself. However, to date, little work has thoroughly examined the functional roles of mtDNA variants in such age-related diseases or the therapeutic potential of mitochondrial-derived peptides (MDPs) in these conditions. Our lab hypothesizes that mtDNA SNPs could affect MDPs, and we recently showed that a mtDNA SNP is associated with reduced circulating levels of an MDP called humanin and with cognitive decline. How other mtDNA SNPs affect MDPs and disease risk has yet to be analyzed. Remarkably, a recent paper showed a mtDNA SNP (m.2158 T>C) reduces the risk of Parkinson’s disease (PD). Of note, this SNP changes lysine (K) 4 to arginine (R) of a MDP called SHLP2, which is encoded by the 16S rRNA region of the mtDNA. SHLP2 acts as a neuroprotective factor and as a metabolic regulator. We hypothesized that K4R SHLP2 – produced by individuals who carry mtDNA m.2158 T>C – is a protective factor for Parkinson’s disease. Cycloheximide-treated pulse-chase experiments additionally showed that K4R SHLP2 is more stable than WT SHLP2. WT SHLP2 has a polyubiquitination whereas K4R SHLP2 diminish the polyubiquitination. K4R SHLP2 more potently inhibits PD toxin (MPP+) induced apoptosis in neuronal cells. K4R SHLP2 reverse the mitochondrial membrane potential loss and mitochondria respiration defect in TFAM heterozygous knockout MEFs. Altogether, SHLP2 has the therapeutic potential as a precision medicine in PD.
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spelling pubmed-68455102019-11-18 MITOCHONDRIAL-DERIVED PEPTIDE, SHLP2, A NOVEL PROTECTIVE FACTOR IN PARKINSON’S DISEASE Kim, Su Jeong Devgan, Anjali Mehta, Hemal H Cohen, Pinchas Innov Aging Session Lb935 (Late Breaking Poster) Mitochondrial DNA (mtDNA) variants are associated with a wide range of diseases of aging, from diabetes to Alzheimer’s, as well as with longevity itself. However, to date, little work has thoroughly examined the functional roles of mtDNA variants in such age-related diseases or the therapeutic potential of mitochondrial-derived peptides (MDPs) in these conditions. Our lab hypothesizes that mtDNA SNPs could affect MDPs, and we recently showed that a mtDNA SNP is associated with reduced circulating levels of an MDP called humanin and with cognitive decline. How other mtDNA SNPs affect MDPs and disease risk has yet to be analyzed. Remarkably, a recent paper showed a mtDNA SNP (m.2158 T>C) reduces the risk of Parkinson’s disease (PD). Of note, this SNP changes lysine (K) 4 to arginine (R) of a MDP called SHLP2, which is encoded by the 16S rRNA region of the mtDNA. SHLP2 acts as a neuroprotective factor and as a metabolic regulator. We hypothesized that K4R SHLP2 – produced by individuals who carry mtDNA m.2158 T>C – is a protective factor for Parkinson’s disease. Cycloheximide-treated pulse-chase experiments additionally showed that K4R SHLP2 is more stable than WT SHLP2. WT SHLP2 has a polyubiquitination whereas K4R SHLP2 diminish the polyubiquitination. K4R SHLP2 more potently inhibits PD toxin (MPP+) induced apoptosis in neuronal cells. K4R SHLP2 reverse the mitochondrial membrane potential loss and mitochondria respiration defect in TFAM heterozygous knockout MEFs. Altogether, SHLP2 has the therapeutic potential as a precision medicine in PD. Oxford University Press 2019-11-08 /pmc/articles/PMC6845510/ http://dx.doi.org/10.1093/geroni/igz038.3088 Text en © The Author(s) 2019. Published by Oxford University Press on behalf of The Gerontological Society of America. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Session Lb935 (Late Breaking Poster)
Kim, Su Jeong
Devgan, Anjali
Mehta, Hemal H
Cohen, Pinchas
MITOCHONDRIAL-DERIVED PEPTIDE, SHLP2, A NOVEL PROTECTIVE FACTOR IN PARKINSON’S DISEASE
title MITOCHONDRIAL-DERIVED PEPTIDE, SHLP2, A NOVEL PROTECTIVE FACTOR IN PARKINSON’S DISEASE
title_full MITOCHONDRIAL-DERIVED PEPTIDE, SHLP2, A NOVEL PROTECTIVE FACTOR IN PARKINSON’S DISEASE
title_fullStr MITOCHONDRIAL-DERIVED PEPTIDE, SHLP2, A NOVEL PROTECTIVE FACTOR IN PARKINSON’S DISEASE
title_full_unstemmed MITOCHONDRIAL-DERIVED PEPTIDE, SHLP2, A NOVEL PROTECTIVE FACTOR IN PARKINSON’S DISEASE
title_short MITOCHONDRIAL-DERIVED PEPTIDE, SHLP2, A NOVEL PROTECTIVE FACTOR IN PARKINSON’S DISEASE
title_sort mitochondrial-derived peptide, shlp2, a novel protective factor in parkinson’s disease
topic Session Lb935 (Late Breaking Poster)
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6845510/
http://dx.doi.org/10.1093/geroni/igz038.3088
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