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A proteomic study to unveil lead toxicity-induced memory impairments invoked by synaptic dysregulation

Lead (Pb(2+)), a ubiquitously present heavy metal toxin, has various detrimental effects on memory and cognition. However, the molecular processes affected by Pb(2+) causing structural and functional anomalies are still unclear. To explore this, we employed behavioral and proteomic approaches using...

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Autores principales: Mohanraj, Nivedha, Joshi, Neha S., Poulose, Roshni, Patil, Rahul R., Santhoshkumar, Rashmi, Kumar, Anubhav, Waghmare, Girish P., Saha, Amit Kumar, Haider, Syeda Zehra, Markandeya, Yogananda S., Dey, Gourav, Rao, Laxmi T., Govindaraj, Periyasamy, Mehta, Bhupesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9742914/
https://www.ncbi.nlm.nih.gov/pubmed/36518382
http://dx.doi.org/10.1016/j.toxrep.2022.07.002
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author Mohanraj, Nivedha
Joshi, Neha S.
Poulose, Roshni
Patil, Rahul R.
Santhoshkumar, Rashmi
Kumar, Anubhav
Waghmare, Girish P.
Saha, Amit Kumar
Haider, Syeda Zehra
Markandeya, Yogananda S.
Dey, Gourav
Rao, Laxmi T.
Govindaraj, Periyasamy
Mehta, Bhupesh
author_facet Mohanraj, Nivedha
Joshi, Neha S.
Poulose, Roshni
Patil, Rahul R.
Santhoshkumar, Rashmi
Kumar, Anubhav
Waghmare, Girish P.
Saha, Amit Kumar
Haider, Syeda Zehra
Markandeya, Yogananda S.
Dey, Gourav
Rao, Laxmi T.
Govindaraj, Periyasamy
Mehta, Bhupesh
author_sort Mohanraj, Nivedha
collection PubMed
description Lead (Pb(2+)), a ubiquitously present heavy metal toxin, has various detrimental effects on memory and cognition. However, the molecular processes affected by Pb(2+) causing structural and functional anomalies are still unclear. To explore this, we employed behavioral and proteomic approaches using rat pups exposed to lead acetate through maternal lactation from postnatal day 0 (P0) until weaning. Behavioral results from three-month-old rats clearly emphasized the early life Pb(2+) exposure induced impairments in spatial cognition. Further, proteomic analysis of synaptosomal fractions revealed differential alteration of 289 proteins, which shows functional significance in elucidating Pb(2+) induced physiological changes. Focusing on the association of Small Ubiquitin-like MOdifier (SUMO), a post-translational modification, with Pb(2+) induced cognitive abnormalities, we identified 45 key SUMO target proteins. The significant downregulation of SUMO target proteins such as metabotropic glutamate receptor 3 (GRM3), glutamate receptor isoforms 2 and 3 (GRIA 2 and GRIA3) and flotilin-1 (FLOT1) indicates SUMOylation at the synapses could contribute to and drive Pb(2+) induced physiological imbalance. These findings identify SUMOylation as a vital protein modifier with potential roles in hippocampal memory consolidation and regulation of cognition. DATA AVAILBILITY: The mass spectrometry proteomics data have been deposited to the ProteomeXchange Consortium via the PRIDE partner repository with the dataset identifier PXD034212&#34.
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spelling pubmed-97429142022-12-13 A proteomic study to unveil lead toxicity-induced memory impairments invoked by synaptic dysregulation Mohanraj, Nivedha Joshi, Neha S. Poulose, Roshni Patil, Rahul R. Santhoshkumar, Rashmi Kumar, Anubhav Waghmare, Girish P. Saha, Amit Kumar Haider, Syeda Zehra Markandeya, Yogananda S. Dey, Gourav Rao, Laxmi T. Govindaraj, Periyasamy Mehta, Bhupesh Toxicol Rep Regular Article Lead (Pb(2+)), a ubiquitously present heavy metal toxin, has various detrimental effects on memory and cognition. However, the molecular processes affected by Pb(2+) causing structural and functional anomalies are still unclear. To explore this, we employed behavioral and proteomic approaches using rat pups exposed to lead acetate through maternal lactation from postnatal day 0 (P0) until weaning. Behavioral results from three-month-old rats clearly emphasized the early life Pb(2+) exposure induced impairments in spatial cognition. Further, proteomic analysis of synaptosomal fractions revealed differential alteration of 289 proteins, which shows functional significance in elucidating Pb(2+) induced physiological changes. Focusing on the association of Small Ubiquitin-like MOdifier (SUMO), a post-translational modification, with Pb(2+) induced cognitive abnormalities, we identified 45 key SUMO target proteins. The significant downregulation of SUMO target proteins such as metabotropic glutamate receptor 3 (GRM3), glutamate receptor isoforms 2 and 3 (GRIA 2 and GRIA3) and flotilin-1 (FLOT1) indicates SUMOylation at the synapses could contribute to and drive Pb(2+) induced physiological imbalance. These findings identify SUMOylation as a vital protein modifier with potential roles in hippocampal memory consolidation and regulation of cognition. DATA AVAILBILITY: The mass spectrometry proteomics data have been deposited to the ProteomeXchange Consortium via the PRIDE partner repository with the dataset identifier PXD034212&#34. Elsevier 2022-07-07 /pmc/articles/PMC9742914/ /pubmed/36518382 http://dx.doi.org/10.1016/j.toxrep.2022.07.002 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Regular Article
Mohanraj, Nivedha
Joshi, Neha S.
Poulose, Roshni
Patil, Rahul R.
Santhoshkumar, Rashmi
Kumar, Anubhav
Waghmare, Girish P.
Saha, Amit Kumar
Haider, Syeda Zehra
Markandeya, Yogananda S.
Dey, Gourav
Rao, Laxmi T.
Govindaraj, Periyasamy
Mehta, Bhupesh
A proteomic study to unveil lead toxicity-induced memory impairments invoked by synaptic dysregulation
title A proteomic study to unveil lead toxicity-induced memory impairments invoked by synaptic dysregulation
title_full A proteomic study to unveil lead toxicity-induced memory impairments invoked by synaptic dysregulation
title_fullStr A proteomic study to unveil lead toxicity-induced memory impairments invoked by synaptic dysregulation
title_full_unstemmed A proteomic study to unveil lead toxicity-induced memory impairments invoked by synaptic dysregulation
title_short A proteomic study to unveil lead toxicity-induced memory impairments invoked by synaptic dysregulation
title_sort proteomic study to unveil lead toxicity-induced memory impairments invoked by synaptic dysregulation
topic Regular Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9742914/
https://www.ncbi.nlm.nih.gov/pubmed/36518382
http://dx.doi.org/10.1016/j.toxrep.2022.07.002
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