HDAC6 in Diseases of Cognition and of Neurons

Central nervous system (CNS) neurodegenerative diseases are characterized by faulty intracellular transport, cognition, and aggregate regulation. Traditionally, neuroprotection exerted by histone deacetylase (HDAC) inhibitors (HDACi) has been attributed to the ability of this drug class to promote h...

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Main Author: Patrizia LoPresti
Format: Article
Language:English
Published: MDPI AG 2021-12-01
Series:Cells
Subjects:
Online Access:https://www.mdpi.com/2073-4409/10/1/12
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spelling doaj-cbcc74e5d17c481b8b1ee9f4e7f5fb072020-12-24T00:04:18ZengMDPI AGCells2073-44092021-12-0110121210.3390/cells10010012HDAC6 in Diseases of Cognition and of NeuronsPatrizia LoPresti0Department of Psychology, University of Illinois at Chicago, 1007 West Harrison Street, Chicago, IL 60607, USACentral nervous system (CNS) neurodegenerative diseases are characterized by faulty intracellular transport, cognition, and aggregate regulation. Traditionally, neuroprotection exerted by histone deacetylase (HDAC) inhibitors (HDACi) has been attributed to the ability of this drug class to promote histone acetylation. However, HDAC6 in the healthy CNS functions via distinct mechanisms, due largely to its cytoplasmic localization. Indeed, in healthy neurons, cytoplasmic HDAC6 regulates the acetylation of a variety of non-histone proteins that are linked to separate functions, i.e., intracellular transport, neurotransmitter release, and aggregate formation. These three HDAC6 activities could work independently or in synergy. Of particular interest, HDAC6 targets the synaptic protein Bruchpilot and neurotransmitter release. In pathological conditions, HDAC6 becomes abundant in the nucleus, with deleterious consequences for transcription regulation and synapses. Thus, HDAC6 plays a leading role in neuronal health or dysfunction. Here, we review recent findings and novel conclusions on the role of HDAC6 in neurodegeneration. Selective studies with pan-HDACi are also included. We propose that an early alteration of HDAC6 undermines synaptic transmission, while altering transport and aggregation, eventually leading to neurodegeneration.https://www.mdpi.com/2073-4409/10/1/12neurodegenerationprogressive multiple sclerosissynapsesintracellular transportaggregatescognition
collection DOAJ
language English
format Article
sources DOAJ
author Patrizia LoPresti
spellingShingle Patrizia LoPresti
HDAC6 in Diseases of Cognition and of Neurons
Cells
neurodegeneration
progressive multiple sclerosis
synapses
intracellular transport
aggregates
cognition
author_facet Patrizia LoPresti
author_sort Patrizia LoPresti
title HDAC6 in Diseases of Cognition and of Neurons
title_short HDAC6 in Diseases of Cognition and of Neurons
title_full HDAC6 in Diseases of Cognition and of Neurons
title_fullStr HDAC6 in Diseases of Cognition and of Neurons
title_full_unstemmed HDAC6 in Diseases of Cognition and of Neurons
title_sort hdac6 in diseases of cognition and of neurons
publisher MDPI AG
series Cells
issn 2073-4409
publishDate 2021-12-01
description Central nervous system (CNS) neurodegenerative diseases are characterized by faulty intracellular transport, cognition, and aggregate regulation. Traditionally, neuroprotection exerted by histone deacetylase (HDAC) inhibitors (HDACi) has been attributed to the ability of this drug class to promote histone acetylation. However, HDAC6 in the healthy CNS functions via distinct mechanisms, due largely to its cytoplasmic localization. Indeed, in healthy neurons, cytoplasmic HDAC6 regulates the acetylation of a variety of non-histone proteins that are linked to separate functions, i.e., intracellular transport, neurotransmitter release, and aggregate formation. These three HDAC6 activities could work independently or in synergy. Of particular interest, HDAC6 targets the synaptic protein Bruchpilot and neurotransmitter release. In pathological conditions, HDAC6 becomes abundant in the nucleus, with deleterious consequences for transcription regulation and synapses. Thus, HDAC6 plays a leading role in neuronal health or dysfunction. Here, we review recent findings and novel conclusions on the role of HDAC6 in neurodegeneration. Selective studies with pan-HDACi are also included. We propose that an early alteration of HDAC6 undermines synaptic transmission, while altering transport and aggregation, eventually leading to neurodegeneration.
topic neurodegeneration
progressive multiple sclerosis
synapses
intracellular transport
aggregates
cognition
url https://www.mdpi.com/2073-4409/10/1/12
work_keys_str_mv AT patrizialopresti hdac6indiseasesofcognitionandofneurons
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