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The Loss of α- and β-Tubulin Proteins Are a Pathological Hallmark of Chronic Alcohol Consumption and Natural Brain Ageing

Repetitive excessive alcohol intoxication leads to neuronal damage and brain shrinkage. We examined cytoskeletal protein expression in human post-mortem tissue from Brodmann’s area 9 of the prefrontal cortex (PFC). Brain samples from 44 individuals were divided into equal groups of 11 control, 11 al...

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Autores principales: Labisso, Wajana L., Raulin, Ana-Caroline, Nwidu, Lucky L., Kocon, Artur, Wayne, Declan, Erdozain, Amaia M., Morentin, Benito, Schwendener, Daniela, Allen, George, Enticott, Jack, Gerdes, Henry K., Johnson, Laura, Grzeskowiak, John, Drizou, Fryni, Tarbox, Rebecca, Osna, Natalia A., Kharbanda, Kusum K., Callado, Luis F., Carter, Wayne G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6162390/
https://www.ncbi.nlm.nih.gov/pubmed/30208635
http://dx.doi.org/10.3390/brainsci8090175
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author Labisso, Wajana L.
Raulin, Ana-Caroline
Nwidu, Lucky L.
Kocon, Artur
Wayne, Declan
Erdozain, Amaia M.
Morentin, Benito
Schwendener, Daniela
Allen, George
Enticott, Jack
Gerdes, Henry K.
Johnson, Laura
Grzeskowiak, John
Drizou, Fryni
Tarbox, Rebecca
Osna, Natalia A.
Kharbanda, Kusum K.
Callado, Luis F.
Carter, Wayne G.
author_facet Labisso, Wajana L.
Raulin, Ana-Caroline
Nwidu, Lucky L.
Kocon, Artur
Wayne, Declan
Erdozain, Amaia M.
Morentin, Benito
Schwendener, Daniela
Allen, George
Enticott, Jack
Gerdes, Henry K.
Johnson, Laura
Grzeskowiak, John
Drizou, Fryni
Tarbox, Rebecca
Osna, Natalia A.
Kharbanda, Kusum K.
Callado, Luis F.
Carter, Wayne G.
author_sort Labisso, Wajana L.
collection PubMed
description Repetitive excessive alcohol intoxication leads to neuronal damage and brain shrinkage. We examined cytoskeletal protein expression in human post-mortem tissue from Brodmann’s area 9 of the prefrontal cortex (PFC). Brain samples from 44 individuals were divided into equal groups of 11 control, 11 alcoholic, 11 non-alcoholic suicides, and 11 suicide alcoholics matched for age, sex, and post-mortem delay. Tissue from alcoholic cohorts displayed significantly reduced expression of α- and β-tubulins, and increased levels of acetylated α-tubulin. Protein levels of histone deacetylase-6 (HDAC6), and the microtubule-associated proteins MAP-2 and MAP-tau were reduced in alcoholic cohorts, although for MAPs this was not significant. Tubulin gene expressions increased in alcoholic cohorts but not significantly. Brains from rats administered alcohol for 4 weeks also displayed significantly reduced tubulin protein levels and increased α-tubulin acetylation. PFC tissue from control subjects had reduced tubulin protein expression that was most notable from the sixth to the eighth decade of life. Collectively, loss of neuronal tubulin proteins are a hallmark of both chronic alcohol consumption and natural brain ageing. The reduction of cytosolic tubulin proteins could contribute to the brain volumetric losses reported for alcoholic patients and the elderly.
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spelling pubmed-61623902018-10-02 The Loss of α- and β-Tubulin Proteins Are a Pathological Hallmark of Chronic Alcohol Consumption and Natural Brain Ageing Labisso, Wajana L. Raulin, Ana-Caroline Nwidu, Lucky L. Kocon, Artur Wayne, Declan Erdozain, Amaia M. Morentin, Benito Schwendener, Daniela Allen, George Enticott, Jack Gerdes, Henry K. Johnson, Laura Grzeskowiak, John Drizou, Fryni Tarbox, Rebecca Osna, Natalia A. Kharbanda, Kusum K. Callado, Luis F. Carter, Wayne G. Brain Sci Article Repetitive excessive alcohol intoxication leads to neuronal damage and brain shrinkage. We examined cytoskeletal protein expression in human post-mortem tissue from Brodmann’s area 9 of the prefrontal cortex (PFC). Brain samples from 44 individuals were divided into equal groups of 11 control, 11 alcoholic, 11 non-alcoholic suicides, and 11 suicide alcoholics matched for age, sex, and post-mortem delay. Tissue from alcoholic cohorts displayed significantly reduced expression of α- and β-tubulins, and increased levels of acetylated α-tubulin. Protein levels of histone deacetylase-6 (HDAC6), and the microtubule-associated proteins MAP-2 and MAP-tau were reduced in alcoholic cohorts, although for MAPs this was not significant. Tubulin gene expressions increased in alcoholic cohorts but not significantly. Brains from rats administered alcohol for 4 weeks also displayed significantly reduced tubulin protein levels and increased α-tubulin acetylation. PFC tissue from control subjects had reduced tubulin protein expression that was most notable from the sixth to the eighth decade of life. Collectively, loss of neuronal tubulin proteins are a hallmark of both chronic alcohol consumption and natural brain ageing. The reduction of cytosolic tubulin proteins could contribute to the brain volumetric losses reported for alcoholic patients and the elderly. MDPI 2018-09-11 /pmc/articles/PMC6162390/ /pubmed/30208635 http://dx.doi.org/10.3390/brainsci8090175 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Labisso, Wajana L.
Raulin, Ana-Caroline
Nwidu, Lucky L.
Kocon, Artur
Wayne, Declan
Erdozain, Amaia M.
Morentin, Benito
Schwendener, Daniela
Allen, George
Enticott, Jack
Gerdes, Henry K.
Johnson, Laura
Grzeskowiak, John
Drizou, Fryni
Tarbox, Rebecca
Osna, Natalia A.
Kharbanda, Kusum K.
Callado, Luis F.
Carter, Wayne G.
The Loss of α- and β-Tubulin Proteins Are a Pathological Hallmark of Chronic Alcohol Consumption and Natural Brain Ageing
title The Loss of α- and β-Tubulin Proteins Are a Pathological Hallmark of Chronic Alcohol Consumption and Natural Brain Ageing
title_full The Loss of α- and β-Tubulin Proteins Are a Pathological Hallmark of Chronic Alcohol Consumption and Natural Brain Ageing
title_fullStr The Loss of α- and β-Tubulin Proteins Are a Pathological Hallmark of Chronic Alcohol Consumption and Natural Brain Ageing
title_full_unstemmed The Loss of α- and β-Tubulin Proteins Are a Pathological Hallmark of Chronic Alcohol Consumption and Natural Brain Ageing
title_short The Loss of α- and β-Tubulin Proteins Are a Pathological Hallmark of Chronic Alcohol Consumption and Natural Brain Ageing
title_sort loss of α- and β-tubulin proteins are a pathological hallmark of chronic alcohol consumption and natural brain ageing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6162390/
https://www.ncbi.nlm.nih.gov/pubmed/30208635
http://dx.doi.org/10.3390/brainsci8090175
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