Sea urchin akt activity is Runx-dependent and required for post-cleavage stage cell division
Summary In animal development following the initial cleavage stage of embryogenesis, the cell cycle becomes dependent on intercellular signaling and controlled by the genomically encoded ontogenetic program. Runx transcription factors are critical regulators of metazoan developmental signaling, and...
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2013-03-01
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doaj-6a04276580fb48c293b30ed94dc7880e2021-06-02T18:43:51ZengThe Company of BiologistsBiology Open2046-63902013-03-012547247810.1242/bio.2013391320133913Sea urchin akt activity is Runx-dependent and required for post-cleavage stage cell divisionAnthony J. Robertson0Alison Coluccio1Sarah JensenKatarina RydlizkyJames A. Coffman Present address: King Abdullah University of Science and Technology, Thuwal, Kingdom of Saudi Arabia Present address: Boyce Thompson Institute for Plant Research, Ithaca, New York, USA Summary In animal development following the initial cleavage stage of embryogenesis, the cell cycle becomes dependent on intercellular signaling and controlled by the genomically encoded ontogenetic program. Runx transcription factors are critical regulators of metazoan developmental signaling, and we have shown that the sea urchin Runx gene runt-1, which is globally expressed during early embryogenesis, functions in support of blastula stage cell proliferation and expression of the mitogenic genes pkc1, cyclinD, and several wnts. To obtain a more comprehensive list of early runt-1 regulatory targets, we screened a Strongylocentrotus purpuratus microarray to identify genes mis-expressed in mid-blastula stage runt-1 morphants. This analysis showed that loss of Runx function perturbs the expression of multiple genes involved in cell division, including the pro-growth and survival kinase Akt (PKB), which is significantly underexpressed in runt-1 morphants. Further genomic analysis revealed that Akt is encoded by two genes in the S. purpuratus genome, akt-1 and akt-2, both of which contain numerous canonical Runx target sequences. The transcripts of both genes accumulate several fold during blastula stage, contingent on runt-1 expression. Inhibiting Akt expression or activity causes blastula stage cell cycle arrest, whereas overexpression of akt-1 mRNA rescues cell proliferation in runt-1 morphants. These results indicate that post-cleavage stage cell division requires Runx-dependent expression of akt.http://bio.biologists.org/content/2/5/472RunxAktPKBSea urchin embryoDevelopmentCell proliferation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Anthony J. Robertson Alison Coluccio Sarah Jensen Katarina Rydlizky James A. Coffman |
spellingShingle |
Anthony J. Robertson Alison Coluccio Sarah Jensen Katarina Rydlizky James A. Coffman Sea urchin akt activity is Runx-dependent and required for post-cleavage stage cell division Biology Open Runx Akt PKB Sea urchin embryo Development Cell proliferation |
author_facet |
Anthony J. Robertson Alison Coluccio Sarah Jensen Katarina Rydlizky James A. Coffman |
author_sort |
Anthony J. Robertson |
title |
Sea urchin akt activity is Runx-dependent and required for post-cleavage stage cell division |
title_short |
Sea urchin akt activity is Runx-dependent and required for post-cleavage stage cell division |
title_full |
Sea urchin akt activity is Runx-dependent and required for post-cleavage stage cell division |
title_fullStr |
Sea urchin akt activity is Runx-dependent and required for post-cleavage stage cell division |
title_full_unstemmed |
Sea urchin akt activity is Runx-dependent and required for post-cleavage stage cell division |
title_sort |
sea urchin akt activity is runx-dependent and required for post-cleavage stage cell division |
publisher |
The Company of Biologists |
series |
Biology Open |
issn |
2046-6390 |
publishDate |
2013-03-01 |
description |
Summary
In animal development following the initial cleavage stage of embryogenesis, the cell cycle becomes dependent on intercellular signaling and controlled by the genomically encoded ontogenetic program. Runx transcription factors are critical regulators of metazoan developmental signaling, and we have shown that the sea urchin Runx gene runt-1, which is globally expressed during early embryogenesis, functions in support of blastula stage cell proliferation and expression of the mitogenic genes pkc1, cyclinD, and several wnts. To obtain a more comprehensive list of early runt-1 regulatory targets, we screened a Strongylocentrotus purpuratus microarray to identify genes mis-expressed in mid-blastula stage runt-1 morphants. This analysis showed that loss of Runx function perturbs the expression of multiple genes involved in cell division, including the pro-growth and survival kinase Akt (PKB), which is significantly underexpressed in runt-1 morphants. Further genomic analysis revealed that Akt is encoded by two genes in the S. purpuratus genome, akt-1 and akt-2, both of which contain numerous canonical Runx target sequences. The transcripts of both genes accumulate several fold during blastula stage, contingent on runt-1 expression. Inhibiting Akt expression or activity causes blastula stage cell cycle arrest, whereas overexpression of akt-1 mRNA rescues cell proliferation in runt-1 morphants. These results indicate that post-cleavage stage cell division requires Runx-dependent expression of akt. |
topic |
Runx Akt PKB Sea urchin embryo Development Cell proliferation |
url |
http://bio.biologists.org/content/2/5/472 |
work_keys_str_mv |
AT anthonyjrobertson seaurchinaktactivityisrunxdependentandrequiredforpostcleavagestagecelldivision AT alisoncoluccio seaurchinaktactivityisrunxdependentandrequiredforpostcleavagestagecelldivision AT sarahjensen seaurchinaktactivityisrunxdependentandrequiredforpostcleavagestagecelldivision AT katarinarydlizky seaurchinaktactivityisrunxdependentandrequiredforpostcleavagestagecelldivision AT jamesacoffman seaurchinaktactivityisrunxdependentandrequiredforpostcleavagestagecelldivision |
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1721402071277633536 |