Argonaute2 and LaminB modulate gene expression by controlling chromatin topology.

Drosophila Argonaute2 (AGO2) has been shown to regulate expression of certain loci in an RNA interference (RNAi)-independent manner, but its genome-wide function on chromatin remains unknown. Here, we identified the nuclear scaffolding protein LaminB as a novel interactor of AGO2. When either AGO2 o...

Full description

Bibliographic Details
Main Authors: Ezequiel Nazer, Ryan K Dale, Madoka Chinen, Behram Radmanesh, Elissa P Lei
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-03-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC5864089?pdf=render
id doaj-2c73be7e19db40ceb692e211636f13eb
record_format Article
spelling doaj-2c73be7e19db40ceb692e211636f13eb2020-11-25T02:06:26ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042018-03-01143e100727610.1371/journal.pgen.1007276Argonaute2 and LaminB modulate gene expression by controlling chromatin topology.Ezequiel NazerRyan K DaleMadoka ChinenBehram RadmaneshElissa P LeiDrosophila Argonaute2 (AGO2) has been shown to regulate expression of certain loci in an RNA interference (RNAi)-independent manner, but its genome-wide function on chromatin remains unknown. Here, we identified the nuclear scaffolding protein LaminB as a novel interactor of AGO2. When either AGO2 or LaminB are depleted in Kc cells, similar transcription changes are observed genome-wide. In particular, changes in expression occur mainly in active or potentially active chromatin, both inside and outside LaminB-associated domains (LADs). Furthermore, we identified a somatic target of AGO2 transcriptional repression, no hitter (nht), which is immersed in a LAD located within a repressive topologically-associated domain (TAD). Null mutation but not catalytic inactivation of AGO2 leads to ectopic expression of nht and downstream spermatogenesis genes. Depletion of either AGO2 or LaminB results in reduced looping interactions within the nht TAD as well as ectopic inter-TAD interactions, as detected by 4C-seq analysis. Overall, our findings reveal coordination of AGO2 and LaminB function to dictate genome architecture and thereby regulate gene expression.http://europepmc.org/articles/PMC5864089?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ezequiel Nazer
Ryan K Dale
Madoka Chinen
Behram Radmanesh
Elissa P Lei
spellingShingle Ezequiel Nazer
Ryan K Dale
Madoka Chinen
Behram Radmanesh
Elissa P Lei
Argonaute2 and LaminB modulate gene expression by controlling chromatin topology.
PLoS Genetics
author_facet Ezequiel Nazer
Ryan K Dale
Madoka Chinen
Behram Radmanesh
Elissa P Lei
author_sort Ezequiel Nazer
title Argonaute2 and LaminB modulate gene expression by controlling chromatin topology.
title_short Argonaute2 and LaminB modulate gene expression by controlling chromatin topology.
title_full Argonaute2 and LaminB modulate gene expression by controlling chromatin topology.
title_fullStr Argonaute2 and LaminB modulate gene expression by controlling chromatin topology.
title_full_unstemmed Argonaute2 and LaminB modulate gene expression by controlling chromatin topology.
title_sort argonaute2 and laminb modulate gene expression by controlling chromatin topology.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2018-03-01
description Drosophila Argonaute2 (AGO2) has been shown to regulate expression of certain loci in an RNA interference (RNAi)-independent manner, but its genome-wide function on chromatin remains unknown. Here, we identified the nuclear scaffolding protein LaminB as a novel interactor of AGO2. When either AGO2 or LaminB are depleted in Kc cells, similar transcription changes are observed genome-wide. In particular, changes in expression occur mainly in active or potentially active chromatin, both inside and outside LaminB-associated domains (LADs). Furthermore, we identified a somatic target of AGO2 transcriptional repression, no hitter (nht), which is immersed in a LAD located within a repressive topologically-associated domain (TAD). Null mutation but not catalytic inactivation of AGO2 leads to ectopic expression of nht and downstream spermatogenesis genes. Depletion of either AGO2 or LaminB results in reduced looping interactions within the nht TAD as well as ectopic inter-TAD interactions, as detected by 4C-seq analysis. Overall, our findings reveal coordination of AGO2 and LaminB function to dictate genome architecture and thereby regulate gene expression.
url http://europepmc.org/articles/PMC5864089?pdf=render
work_keys_str_mv AT ezequielnazer argonaute2andlaminbmodulategeneexpressionbycontrollingchromatintopology
AT ryankdale argonaute2andlaminbmodulategeneexpressionbycontrollingchromatintopology
AT madokachinen argonaute2andlaminbmodulategeneexpressionbycontrollingchromatintopology
AT behramradmanesh argonaute2andlaminbmodulategeneexpressionbycontrollingchromatintopology
AT elissaplei argonaute2andlaminbmodulategeneexpressionbycontrollingchromatintopology
_version_ 1724933935425650688