Cargando…

Control of a neuronal morphology program by an RNA-binding zinc finger protein, Unkempt

Cellular morphology is an essential determinant of cellular function in all kingdoms of life, yet little is known about how cell shape is controlled. Here we describe a molecular program that controls the early morphology of neurons through a metazoan-specific zinc finger protein, Unkempt. Depletion...

Descripción completa

Detalles Bibliográficos
Autores principales: Murn, Jernej, Zarnack, Kathi, Yang, Yawei J., Durak, Omer, Murphy, Elisabeth A., Cheloufi, Sihem, Gonzalez, Dilenny M., Teplova, Marianna, Curk, Tomaž, Zuber, Johannes, Patel, Dinshaw J., Ule, Jernej, Luscombe, Nicholas M., Tsai, Li-Huei, Walsh, Christopher A., Shi, Yang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4358403/
https://www.ncbi.nlm.nih.gov/pubmed/25737280
http://dx.doi.org/10.1101/gad.258483.115
_version_ 1782361265193091072
author Murn, Jernej
Zarnack, Kathi
Yang, Yawei J.
Durak, Omer
Murphy, Elisabeth A.
Cheloufi, Sihem
Gonzalez, Dilenny M.
Teplova, Marianna
Curk, Tomaž
Zuber, Johannes
Patel, Dinshaw J.
Ule, Jernej
Luscombe, Nicholas M.
Tsai, Li-Huei
Walsh, Christopher A.
Shi, Yang
author_facet Murn, Jernej
Zarnack, Kathi
Yang, Yawei J.
Durak, Omer
Murphy, Elisabeth A.
Cheloufi, Sihem
Gonzalez, Dilenny M.
Teplova, Marianna
Curk, Tomaž
Zuber, Johannes
Patel, Dinshaw J.
Ule, Jernej
Luscombe, Nicholas M.
Tsai, Li-Huei
Walsh, Christopher A.
Shi, Yang
author_sort Murn, Jernej
collection PubMed
description Cellular morphology is an essential determinant of cellular function in all kingdoms of life, yet little is known about how cell shape is controlled. Here we describe a molecular program that controls the early morphology of neurons through a metazoan-specific zinc finger protein, Unkempt. Depletion of Unkempt in mouse embryos disrupts the shape of migrating neurons, while ectopic expression confers neuronal-like morphology to cells of different nonneuronal lineages. We found that Unkempt is a sequence-specific RNA-binding protein and identified its precise binding sites within coding regions of mRNAs linked to protein metabolism and trafficking. RNA binding is required for Unkempt-induced remodeling of cellular shape and is directly coupled to a reduced production of the encoded proteins. These findings link post-transcriptional regulation of gene expression with cellular shape and have general implications for the development and disease of multicellular organisms.
format Online
Article
Text
id pubmed-4358403
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Cold Spring Harbor Laboratory Press
record_format MEDLINE/PubMed
spelling pubmed-43584032015-09-01 Control of a neuronal morphology program by an RNA-binding zinc finger protein, Unkempt Murn, Jernej Zarnack, Kathi Yang, Yawei J. Durak, Omer Murphy, Elisabeth A. Cheloufi, Sihem Gonzalez, Dilenny M. Teplova, Marianna Curk, Tomaž Zuber, Johannes Patel, Dinshaw J. Ule, Jernej Luscombe, Nicholas M. Tsai, Li-Huei Walsh, Christopher A. Shi, Yang Genes Dev Research Paper Cellular morphology is an essential determinant of cellular function in all kingdoms of life, yet little is known about how cell shape is controlled. Here we describe a molecular program that controls the early morphology of neurons through a metazoan-specific zinc finger protein, Unkempt. Depletion of Unkempt in mouse embryos disrupts the shape of migrating neurons, while ectopic expression confers neuronal-like morphology to cells of different nonneuronal lineages. We found that Unkempt is a sequence-specific RNA-binding protein and identified its precise binding sites within coding regions of mRNAs linked to protein metabolism and trafficking. RNA binding is required for Unkempt-induced remodeling of cellular shape and is directly coupled to a reduced production of the encoded proteins. These findings link post-transcriptional regulation of gene expression with cellular shape and have general implications for the development and disease of multicellular organisms. Cold Spring Harbor Laboratory Press 2015-03-01 /pmc/articles/PMC4358403/ /pubmed/25737280 http://dx.doi.org/10.1101/gad.258483.115 Text en © 2015 Murn et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genesdev.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Research Paper
Murn, Jernej
Zarnack, Kathi
Yang, Yawei J.
Durak, Omer
Murphy, Elisabeth A.
Cheloufi, Sihem
Gonzalez, Dilenny M.
Teplova, Marianna
Curk, Tomaž
Zuber, Johannes
Patel, Dinshaw J.
Ule, Jernej
Luscombe, Nicholas M.
Tsai, Li-Huei
Walsh, Christopher A.
Shi, Yang
Control of a neuronal morphology program by an RNA-binding zinc finger protein, Unkempt
title Control of a neuronal morphology program by an RNA-binding zinc finger protein, Unkempt
title_full Control of a neuronal morphology program by an RNA-binding zinc finger protein, Unkempt
title_fullStr Control of a neuronal morphology program by an RNA-binding zinc finger protein, Unkempt
title_full_unstemmed Control of a neuronal morphology program by an RNA-binding zinc finger protein, Unkempt
title_short Control of a neuronal morphology program by an RNA-binding zinc finger protein, Unkempt
title_sort control of a neuronal morphology program by an rna-binding zinc finger protein, unkempt
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4358403/
https://www.ncbi.nlm.nih.gov/pubmed/25737280
http://dx.doi.org/10.1101/gad.258483.115
work_keys_str_mv AT murnjernej controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt
AT zarnackkathi controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt
AT yangyaweij controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt
AT durakomer controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt
AT murphyelisabetha controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt
AT cheloufisihem controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt
AT gonzalezdilennym controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt
AT teplovamarianna controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt
AT curktomaz controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt
AT zuberjohannes controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt
AT pateldinshawj controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt
AT ulejernej controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt
AT luscombenicholasm controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt
AT tsailihuei controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt
AT walshchristophera controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt
AT shiyang controlofaneuronalmorphologyprogrambyanrnabindingzincfingerproteinunkempt