<it>Xenopus </it>NM23-X4 regulates retinal gliogenesis through interaction with p27Xic1
<p>Abstract</p> <p>Background</p> <p>In <it>Xenopus </it>retinogenesis, p27Xic1, a <it>Xenopus </it>cyclin dependent kinase inhibitor, functions as a cell fate determinant in both gliogenesis and neurogenesis in a context dependent manner. This a...
Main Authors: | , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
BMC
2009-01-01
|
Series: | Neural Development |
Online Access: | http://www.neuraldevelopment.com/content/4/1/1 |
id |
doaj-ab4ece22194c4a12b92de08406943da0 |
---|---|
record_format |
Article |
spelling |
doaj-ab4ece22194c4a12b92de08406943da02020-11-24T21:10:27ZengBMCNeural Development1749-81042009-01-0141110.1186/1749-8104-4-1<it>Xenopus </it>NM23-X4 regulates retinal gliogenesis through interaction with p27Xic1Zollo MassimoHussain KamranWaters Caroline TBilitou AikateriniMochizuki ToshiakiOhnuma Shin-ichi<p>Abstract</p> <p>Background</p> <p>In <it>Xenopus </it>retinogenesis, p27Xic1, a <it>Xenopus </it>cyclin dependent kinase inhibitor, functions as a cell fate determinant in both gliogenesis and neurogenesis in a context dependent manner. This activity is essential for co-ordination of determination and cell cycle regulation. However, very little is known about the mechanism regulating the context dependent choice between gliogenesis versus neurogenesis.</p> <p>Results</p> <p>We have identified NM23-X4, a NM23 family member, as a binding partner of p27Xic1. NM23-X4 is expressed at the periphery of the ciliary marginal zone of the <it>Xenopus </it>retina and the expression overlaps with p27Xic1 at the central side. Our <it>in vivo </it>functional analysis in <it>Xenopus </it>retina has shown that knockdown of NM23-X4 activates gliogenesis. Furthermore, co-overexpression of NM23-X4 with p27Xic1 results in the inhibition of p27Xic1-mediated gliogenesis, through direct interaction of NM23-X4 with the amino-terminal side of p27Xic1. This inhibitory effect on gliogenesis requires serine-150 and histidine-148, which correspond to the important residues for the kinase activities of NM23 family members.</p> <p>Conclusion</p> <p>This study demonstrates that NM23-X4 functions as an inhibitor of p27Xic1-mediated gliogenesis in <it>Xenopus </it>retina and suggests that this activity contributes to the proper spatio-temporal regulation of gliogenesis.</p> http://www.neuraldevelopment.com/content/4/1/1 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zollo Massimo Hussain Kamran Waters Caroline T Bilitou Aikaterini Mochizuki Toshiaki Ohnuma Shin-ichi |
spellingShingle |
Zollo Massimo Hussain Kamran Waters Caroline T Bilitou Aikaterini Mochizuki Toshiaki Ohnuma Shin-ichi <it>Xenopus </it>NM23-X4 regulates retinal gliogenesis through interaction with p27Xic1 Neural Development |
author_facet |
Zollo Massimo Hussain Kamran Waters Caroline T Bilitou Aikaterini Mochizuki Toshiaki Ohnuma Shin-ichi |
author_sort |
Zollo Massimo |
title |
<it>Xenopus </it>NM23-X4 regulates retinal gliogenesis through interaction with p27Xic1 |
title_short |
<it>Xenopus </it>NM23-X4 regulates retinal gliogenesis through interaction with p27Xic1 |
title_full |
<it>Xenopus </it>NM23-X4 regulates retinal gliogenesis through interaction with p27Xic1 |
title_fullStr |
<it>Xenopus </it>NM23-X4 regulates retinal gliogenesis through interaction with p27Xic1 |
title_full_unstemmed |
<it>Xenopus </it>NM23-X4 regulates retinal gliogenesis through interaction with p27Xic1 |
title_sort |
<it>xenopus </it>nm23-x4 regulates retinal gliogenesis through interaction with p27xic1 |
publisher |
BMC |
series |
Neural Development |
issn |
1749-8104 |
publishDate |
2009-01-01 |
description |
<p>Abstract</p> <p>Background</p> <p>In <it>Xenopus </it>retinogenesis, p27Xic1, a <it>Xenopus </it>cyclin dependent kinase inhibitor, functions as a cell fate determinant in both gliogenesis and neurogenesis in a context dependent manner. This activity is essential for co-ordination of determination and cell cycle regulation. However, very little is known about the mechanism regulating the context dependent choice between gliogenesis versus neurogenesis.</p> <p>Results</p> <p>We have identified NM23-X4, a NM23 family member, as a binding partner of p27Xic1. NM23-X4 is expressed at the periphery of the ciliary marginal zone of the <it>Xenopus </it>retina and the expression overlaps with p27Xic1 at the central side. Our <it>in vivo </it>functional analysis in <it>Xenopus </it>retina has shown that knockdown of NM23-X4 activates gliogenesis. Furthermore, co-overexpression of NM23-X4 with p27Xic1 results in the inhibition of p27Xic1-mediated gliogenesis, through direct interaction of NM23-X4 with the amino-terminal side of p27Xic1. This inhibitory effect on gliogenesis requires serine-150 and histidine-148, which correspond to the important residues for the kinase activities of NM23 family members.</p> <p>Conclusion</p> <p>This study demonstrates that NM23-X4 functions as an inhibitor of p27Xic1-mediated gliogenesis in <it>Xenopus </it>retina and suggests that this activity contributes to the proper spatio-temporal regulation of gliogenesis.</p> |
url |
http://www.neuraldevelopment.com/content/4/1/1 |
work_keys_str_mv |
AT zollomassimo itxenopusitnm23x4regulatesretinalgliogenesisthroughinteractionwithp27xic1 AT hussainkamran itxenopusitnm23x4regulatesretinalgliogenesisthroughinteractionwithp27xic1 AT waterscarolinet itxenopusitnm23x4regulatesretinalgliogenesisthroughinteractionwithp27xic1 AT bilitouaikaterini itxenopusitnm23x4regulatesretinalgliogenesisthroughinteractionwithp27xic1 AT mochizukitoshiaki itxenopusitnm23x4regulatesretinalgliogenesisthroughinteractionwithp27xic1 AT ohnumashinichi itxenopusitnm23x4regulatesretinalgliogenesisthroughinteractionwithp27xic1 |
_version_ |
1716756482772434944 |