A positive feedback mechanism that regulates expression of miR-9 during neurogenesis.

MiR-9, a neuron-specific miRNA, is an important regulator of neurogenesis. In this study we identify how miR-9 is regulated during early differentiation from a neural stem-like cell. We utilized two immortalized rat precursor clones, one committed to neurogenesis (L2.2) and another capable of produc...

Full description

Bibliographic Details
Main Authors: Jonathan L Davila, Loyal A Goff, Christopher L Ricupero, Cynthia Camarillo, Eileen N Oni, Mavis R Swerdel, Alana J Toro-Ramos, Jiali Li, Ronald P Hart
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3979806?pdf=render
id doaj-f90389f00c9a4255b0bc206995a5d554
record_format Article
spelling doaj-f90389f00c9a4255b0bc206995a5d5542020-11-25T02:29:57ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0194e9434810.1371/journal.pone.0094348A positive feedback mechanism that regulates expression of miR-9 during neurogenesis.Jonathan L DavilaLoyal A GoffChristopher L RicuperoCynthia CamarilloEileen N OniMavis R SwerdelAlana J Toro-RamosJiali LiRonald P HartMiR-9, a neuron-specific miRNA, is an important regulator of neurogenesis. In this study we identify how miR-9 is regulated during early differentiation from a neural stem-like cell. We utilized two immortalized rat precursor clones, one committed to neurogenesis (L2.2) and another capable of producing both neurons and non-neuronal cells (L2.3), to reproducibly study early neurogenesis. Exogenous miR-9 is capable of increasing neurogenesis from L2.3 cells. Only one of three genomic loci capable of encoding miR-9 was regulated during neurogenesis and the promoter region of this locus contains sufficient functional elements to drive expression of a luciferase reporter in a developmentally regulated pattern. Furthermore, among a large number of potential regulatory sites encoded in this sequence, Mef2 stood out because of its known pro-neuronal role. Of four Mef2 paralogs, we found only Mef2C mRNA was regulated during neurogenesis. Removal of predicted Mef2 binding sites or knockdown of Mef2C expression reduced miR-9-2 promoter activity. Finally, the mRNA encoding the Mef2C binding partner HDAC4 was shown to be targeted by miR-9. Since HDAC4 protein could be co-immunoprecipitated with Mef2C protein or with genomic Mef2 binding sequences, we conclude that miR-9 regulation is mediated, at least in part, by Mef2C binding but that expressed miR-9 has the capacity to reduce inhibitory HDAC4, stabilizing its own expression in a positive feedback mechanism.http://europepmc.org/articles/PMC3979806?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jonathan L Davila
Loyal A Goff
Christopher L Ricupero
Cynthia Camarillo
Eileen N Oni
Mavis R Swerdel
Alana J Toro-Ramos
Jiali Li
Ronald P Hart
spellingShingle Jonathan L Davila
Loyal A Goff
Christopher L Ricupero
Cynthia Camarillo
Eileen N Oni
Mavis R Swerdel
Alana J Toro-Ramos
Jiali Li
Ronald P Hart
A positive feedback mechanism that regulates expression of miR-9 during neurogenesis.
PLoS ONE
author_facet Jonathan L Davila
Loyal A Goff
Christopher L Ricupero
Cynthia Camarillo
Eileen N Oni
Mavis R Swerdel
Alana J Toro-Ramos
Jiali Li
Ronald P Hart
author_sort Jonathan L Davila
title A positive feedback mechanism that regulates expression of miR-9 during neurogenesis.
title_short A positive feedback mechanism that regulates expression of miR-9 during neurogenesis.
title_full A positive feedback mechanism that regulates expression of miR-9 during neurogenesis.
title_fullStr A positive feedback mechanism that regulates expression of miR-9 during neurogenesis.
title_full_unstemmed A positive feedback mechanism that regulates expression of miR-9 during neurogenesis.
title_sort positive feedback mechanism that regulates expression of mir-9 during neurogenesis.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description MiR-9, a neuron-specific miRNA, is an important regulator of neurogenesis. In this study we identify how miR-9 is regulated during early differentiation from a neural stem-like cell. We utilized two immortalized rat precursor clones, one committed to neurogenesis (L2.2) and another capable of producing both neurons and non-neuronal cells (L2.3), to reproducibly study early neurogenesis. Exogenous miR-9 is capable of increasing neurogenesis from L2.3 cells. Only one of three genomic loci capable of encoding miR-9 was regulated during neurogenesis and the promoter region of this locus contains sufficient functional elements to drive expression of a luciferase reporter in a developmentally regulated pattern. Furthermore, among a large number of potential regulatory sites encoded in this sequence, Mef2 stood out because of its known pro-neuronal role. Of four Mef2 paralogs, we found only Mef2C mRNA was regulated during neurogenesis. Removal of predicted Mef2 binding sites or knockdown of Mef2C expression reduced miR-9-2 promoter activity. Finally, the mRNA encoding the Mef2C binding partner HDAC4 was shown to be targeted by miR-9. Since HDAC4 protein could be co-immunoprecipitated with Mef2C protein or with genomic Mef2 binding sequences, we conclude that miR-9 regulation is mediated, at least in part, by Mef2C binding but that expressed miR-9 has the capacity to reduce inhibitory HDAC4, stabilizing its own expression in a positive feedback mechanism.
url http://europepmc.org/articles/PMC3979806?pdf=render
work_keys_str_mv AT jonathanldavila apositivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT loyalagoff apositivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT christopherlricupero apositivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT cynthiacamarillo apositivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT eileennoni apositivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT mavisrswerdel apositivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT alanajtororamos apositivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT jialili apositivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT ronaldphart apositivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT jonathanldavila positivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT loyalagoff positivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT christopherlricupero positivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT cynthiacamarillo positivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT eileennoni positivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT mavisrswerdel positivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT alanajtororamos positivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT jialili positivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
AT ronaldphart positivefeedbackmechanismthatregulatesexpressionofmir9duringneurogenesis
_version_ 1724830700326092800