ROLE OF THE MODULATORY MEDIATOR SEROTONIN IN THE INDUCTION OF EPIGENETIC PROCESSES DURING LONG TERM MEMORY FORMATION IN HELIX
Epigenetic mechanisms controlling long-term memory formation are a promising field in neurobiology. They include posttraslational histone modifications, which lead to chromatin remodeling and thereby influences gene expression involved in learning. Mollusks are a popular model in neurobiology, becau...
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Institute of Cytology and Genetics of Siberian Branch of the Russian Academy of Sciences
2015-01-01
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doaj-ef48ced2a0be49e1b35c795b961b78982021-09-11T08:41:14ZengInstitute of Cytology and Genetics of Siberian Branch of the Russian Academy of SciencesVavilovskij Žurnal Genetiki i Selekcii2500-04622500-32592015-01-01182298307235ROLE OF THE MODULATORY MEDIATOR SEROTONIN IN THE INDUCTION OF EPIGENETIC PROCESSES DURING LONG TERM MEMORY FORMATION IN HELIXL. N. Grinkevich0O. V. Vorobiova1Pavlov Institute of Physiology, Russian Academy of Sciences, St. Petersburg, RussiaPavlov Institute of Physiology, Russian Academy of Sciences, St. Petersburg, RussiaEpigenetic mechanisms controlling long-term memory formation are a promising field in neurobiology. They include posttraslational histone modifications, which lead to chromatin remodeling and thereby influences gene expression involved in learning. Mollusks are a popular model in neurobiology, because they have relatively simple CNSs with giant neurons. Previously, we found strong induction of histone H3 acetylation and methylation during food aversion conditioning in Helix. We think that these processes are regulated by modulatory mediator serotonin, playing an important role in avoidance behavior. To study the influence of serotonin on induction of epigenetic processes, we investigated the action of an unselective antagonist of serotonin receptors, metitepine, on the acetylation and methylation of histone H3 during Helix learning. We found that metitepine treatment prevented activation of methylation and acetylation of H3 induced by learning in the CNS of the snail and deteriorates long term memory formation. Long-term memory formation in metitepine-treated animals can be improved by treatment with histone deacetylase inhibitor Na В. Our data confirm the important role of serotonin in the induction of epigenetic processes during aversion conditioning in Helix.https://vavilov.elpub.ru/jour/article/view/251epigeneticshistone methylation and acetylationmetitepineserotoninmemoryhelix mollusknab hdac inhibitor |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
L. N. Grinkevich O. V. Vorobiova |
spellingShingle |
L. N. Grinkevich O. V. Vorobiova ROLE OF THE MODULATORY MEDIATOR SEROTONIN IN THE INDUCTION OF EPIGENETIC PROCESSES DURING LONG TERM MEMORY FORMATION IN HELIX Vavilovskij Žurnal Genetiki i Selekcii epigenetics histone methylation and acetylation metitepine serotonin memory helix mollusk nab hdac inhibitor |
author_facet |
L. N. Grinkevich O. V. Vorobiova |
author_sort |
L. N. Grinkevich |
title |
ROLE OF THE MODULATORY MEDIATOR SEROTONIN IN THE INDUCTION OF EPIGENETIC PROCESSES DURING LONG TERM MEMORY FORMATION IN HELIX |
title_short |
ROLE OF THE MODULATORY MEDIATOR SEROTONIN IN THE INDUCTION OF EPIGENETIC PROCESSES DURING LONG TERM MEMORY FORMATION IN HELIX |
title_full |
ROLE OF THE MODULATORY MEDIATOR SEROTONIN IN THE INDUCTION OF EPIGENETIC PROCESSES DURING LONG TERM MEMORY FORMATION IN HELIX |
title_fullStr |
ROLE OF THE MODULATORY MEDIATOR SEROTONIN IN THE INDUCTION OF EPIGENETIC PROCESSES DURING LONG TERM MEMORY FORMATION IN HELIX |
title_full_unstemmed |
ROLE OF THE MODULATORY MEDIATOR SEROTONIN IN THE INDUCTION OF EPIGENETIC PROCESSES DURING LONG TERM MEMORY FORMATION IN HELIX |
title_sort |
role of the modulatory mediator serotonin in the induction of epigenetic processes during long term memory formation in helix |
publisher |
Institute of Cytology and Genetics of Siberian Branch of the Russian Academy of Sciences |
series |
Vavilovskij Žurnal Genetiki i Selekcii |
issn |
2500-0462 2500-3259 |
publishDate |
2015-01-01 |
description |
Epigenetic mechanisms controlling long-term memory formation are a promising field in neurobiology. They include posttraslational histone modifications, which lead to chromatin remodeling and thereby influences gene expression involved in learning. Mollusks are a popular model in neurobiology, because they have relatively simple CNSs with giant neurons. Previously, we found strong induction of histone H3 acetylation and methylation during food aversion conditioning in Helix. We think that these processes are regulated by modulatory mediator serotonin, playing an important role in avoidance behavior. To study the influence of serotonin on induction of epigenetic processes, we investigated the action of an unselective antagonist of serotonin receptors, metitepine, on the acetylation and methylation of histone H3 during Helix learning. We found that metitepine treatment prevented activation of methylation and acetylation of H3 induced by learning in the CNS of the snail and deteriorates long term memory formation. Long-term memory formation in metitepine-treated animals can be improved by treatment with histone deacetylase inhibitor Na В. Our data confirm the important role of serotonin in the induction of epigenetic processes during aversion conditioning in Helix. |
topic |
epigenetics histone methylation and acetylation metitepine serotonin memory helix mollusk nab hdac inhibitor |
url |
https://vavilov.elpub.ru/jour/article/view/251 |
work_keys_str_mv |
AT lngrinkevich roleofthemodulatorymediatorserotoninintheinductionofepigeneticprocessesduringlongtermmemoryformationinhelix AT ovvorobiova roleofthemodulatorymediatorserotoninintheinductionofepigeneticprocessesduringlongtermmemoryformationinhelix |
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1717756779935301632 |