Cargando…

Prickle is phosphorylated by Nemo and targeted for degradation to maintain Prickle/Spiny-legs isoform balance during planar cell polarity establishment

Planar cell polarity (PCP) instructs tissue patterning in a wide range of organisms from fruit flies to humans. PCP signaling coordinates cell behavior across tissues and is integrated by cells to couple cell fate identity with position in a developing tissue. In the fly eye, PCP signaling is requir...

Descripción completa

Detalles Bibliográficos
Autores principales: Collu, Giovanna M., Jenny, Andreas, Gaengel, Konstantin, Mirkovic, Ivana, Chin, Mei-ling, Weber, Ursula, Smith, Michael J., Mlodzik, Marek
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5967807/
https://www.ncbi.nlm.nih.gov/pubmed/29758044
http://dx.doi.org/10.1371/journal.pgen.1007391
_version_ 1783325654231547904
author Collu, Giovanna M.
Jenny, Andreas
Gaengel, Konstantin
Mirkovic, Ivana
Chin, Mei-ling
Weber, Ursula
Smith, Michael J.
Mlodzik, Marek
author_facet Collu, Giovanna M.
Jenny, Andreas
Gaengel, Konstantin
Mirkovic, Ivana
Chin, Mei-ling
Weber, Ursula
Smith, Michael J.
Mlodzik, Marek
author_sort Collu, Giovanna M.
collection PubMed
description Planar cell polarity (PCP) instructs tissue patterning in a wide range of organisms from fruit flies to humans. PCP signaling coordinates cell behavior across tissues and is integrated by cells to couple cell fate identity with position in a developing tissue. In the fly eye, PCP signaling is required for the specification of R3 and R4 photoreceptors based upon their positioning relative to the dorso-ventral axis. The ‘core’ PCP pathway involves the asymmetric localization of two distinct membrane-bound complexes, one containing Frizzled (Fz, required in R3) and the other Van Gogh (Vang, required in R4). Inhibitory interactions between the cytosolic components of each complex reinforce asymmetric localization. Prickle (Pk) and Spiny-legs (Pk-Sple) are two antagonistic isoforms of the prickle (pk) gene and are cytoplasmic components of the Vang complex. The balance between their levels is critical for tissue patterning, with Pk-Sple being the major functional isoform in the eye. Here we uncover a post-translational role for Nemo kinase in limiting the amount of the minor isoform Pk. We identified Pk as a Nemo substrate in a genome-wide in vitro band-shift screen. In vivo, nemo genetically interacts with pk(pk) but not pk(sple) and enhances PCP defects in the eye and leg. Nemo phosphorylation limits Pk levels and is required specifically in the R4 photoreceptor like the major isoform, Pk-Sple. Genetic interaction and biochemical data suggest that Nemo phosphorylation of Pk leads to its proteasomal degradation via the Cullin1/SkpA/Slmb complex. dTAK and Homeodomain interacting protein kinase (Hipk) may also act together with Nemo to target Pk for degradation, consistent with similar observations in mammalian studies. Our results therefore demonstrate a mechanism to maintain low levels of the minor Pk isoform, allowing PCP complexes to form correctly and specify cell fate.
format Online
Article
Text
id pubmed-5967807
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-59678072018-06-08 Prickle is phosphorylated by Nemo and targeted for degradation to maintain Prickle/Spiny-legs isoform balance during planar cell polarity establishment Collu, Giovanna M. Jenny, Andreas Gaengel, Konstantin Mirkovic, Ivana Chin, Mei-ling Weber, Ursula Smith, Michael J. Mlodzik, Marek PLoS Genet Research Article Planar cell polarity (PCP) instructs tissue patterning in a wide range of organisms from fruit flies to humans. PCP signaling coordinates cell behavior across tissues and is integrated by cells to couple cell fate identity with position in a developing tissue. In the fly eye, PCP signaling is required for the specification of R3 and R4 photoreceptors based upon their positioning relative to the dorso-ventral axis. The ‘core’ PCP pathway involves the asymmetric localization of two distinct membrane-bound complexes, one containing Frizzled (Fz, required in R3) and the other Van Gogh (Vang, required in R4). Inhibitory interactions between the cytosolic components of each complex reinforce asymmetric localization. Prickle (Pk) and Spiny-legs (Pk-Sple) are two antagonistic isoforms of the prickle (pk) gene and are cytoplasmic components of the Vang complex. The balance between their levels is critical for tissue patterning, with Pk-Sple being the major functional isoform in the eye. Here we uncover a post-translational role for Nemo kinase in limiting the amount of the minor isoform Pk. We identified Pk as a Nemo substrate in a genome-wide in vitro band-shift screen. In vivo, nemo genetically interacts with pk(pk) but not pk(sple) and enhances PCP defects in the eye and leg. Nemo phosphorylation limits Pk levels and is required specifically in the R4 photoreceptor like the major isoform, Pk-Sple. Genetic interaction and biochemical data suggest that Nemo phosphorylation of Pk leads to its proteasomal degradation via the Cullin1/SkpA/Slmb complex. dTAK and Homeodomain interacting protein kinase (Hipk) may also act together with Nemo to target Pk for degradation, consistent with similar observations in mammalian studies. Our results therefore demonstrate a mechanism to maintain low levels of the minor Pk isoform, allowing PCP complexes to form correctly and specify cell fate. Public Library of Science 2018-05-14 /pmc/articles/PMC5967807/ /pubmed/29758044 http://dx.doi.org/10.1371/journal.pgen.1007391 Text en © 2018 Collu et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Collu, Giovanna M.
Jenny, Andreas
Gaengel, Konstantin
Mirkovic, Ivana
Chin, Mei-ling
Weber, Ursula
Smith, Michael J.
Mlodzik, Marek
Prickle is phosphorylated by Nemo and targeted for degradation to maintain Prickle/Spiny-legs isoform balance during planar cell polarity establishment
title Prickle is phosphorylated by Nemo and targeted for degradation to maintain Prickle/Spiny-legs isoform balance during planar cell polarity establishment
title_full Prickle is phosphorylated by Nemo and targeted for degradation to maintain Prickle/Spiny-legs isoform balance during planar cell polarity establishment
title_fullStr Prickle is phosphorylated by Nemo and targeted for degradation to maintain Prickle/Spiny-legs isoform balance during planar cell polarity establishment
title_full_unstemmed Prickle is phosphorylated by Nemo and targeted for degradation to maintain Prickle/Spiny-legs isoform balance during planar cell polarity establishment
title_short Prickle is phosphorylated by Nemo and targeted for degradation to maintain Prickle/Spiny-legs isoform balance during planar cell polarity establishment
title_sort prickle is phosphorylated by nemo and targeted for degradation to maintain prickle/spiny-legs isoform balance during planar cell polarity establishment
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5967807/
https://www.ncbi.nlm.nih.gov/pubmed/29758044
http://dx.doi.org/10.1371/journal.pgen.1007391
work_keys_str_mv AT collugiovannam prickleisphosphorylatedbynemoandtargetedfordegradationtomaintainpricklespinylegsisoformbalanceduringplanarcellpolarityestablishment
AT jennyandreas prickleisphosphorylatedbynemoandtargetedfordegradationtomaintainpricklespinylegsisoformbalanceduringplanarcellpolarityestablishment
AT gaengelkonstantin prickleisphosphorylatedbynemoandtargetedfordegradationtomaintainpricklespinylegsisoformbalanceduringplanarcellpolarityestablishment
AT mirkovicivana prickleisphosphorylatedbynemoandtargetedfordegradationtomaintainpricklespinylegsisoformbalanceduringplanarcellpolarityestablishment
AT chinmeiling prickleisphosphorylatedbynemoandtargetedfordegradationtomaintainpricklespinylegsisoformbalanceduringplanarcellpolarityestablishment
AT weberursula prickleisphosphorylatedbynemoandtargetedfordegradationtomaintainpricklespinylegsisoformbalanceduringplanarcellpolarityestablishment
AT smithmichaelj prickleisphosphorylatedbynemoandtargetedfordegradationtomaintainpricklespinylegsisoformbalanceduringplanarcellpolarityestablishment
AT mlodzikmarek prickleisphosphorylatedbynemoandtargetedfordegradationtomaintainpricklespinylegsisoformbalanceduringplanarcellpolarityestablishment