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Depolarization and CaM Kinase IV Modulate NMDA Receptor Splicing through Two Essential RNA Elements

Alternative splicing controls the activity of many proteins important for neuronal excitation, but the signal-transduction pathways that affect spliced isoform expression are not well understood. One particularly interesting system of alternative splicing is exon 21 (E21) of the NMDA receptor 1 (NMD...

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Autores principales: Lee, Ji-Ann, Xing, Yi, Nguyen, David, Xie, Jiuyong, Lee, Christopher J, Black, Douglas L
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1790950/
https://www.ncbi.nlm.nih.gov/pubmed/17298178
http://dx.doi.org/10.1371/journal.pbio.0050040
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author Lee, Ji-Ann
Xing, Yi
Nguyen, David
Xie, Jiuyong
Lee, Christopher J
Black, Douglas L
author_facet Lee, Ji-Ann
Xing, Yi
Nguyen, David
Xie, Jiuyong
Lee, Christopher J
Black, Douglas L
author_sort Lee, Ji-Ann
collection PubMed
description Alternative splicing controls the activity of many proteins important for neuronal excitation, but the signal-transduction pathways that affect spliced isoform expression are not well understood. One particularly interesting system of alternative splicing is exon 21 (E21) of the NMDA receptor 1 (NMDAR1 E21), which controls the trafficking of NMDA receptors to the plasma membrane and is repressed by Ca(++)/calmodulin-dependent protein kinase (CaMK) IV signaling. Here, we characterize the splicing of NMDAR1 E21. We find that E21 splicing is reversibly repressed by neuronal depolarization, and we identify two RNA elements within the exon that function together to mediate the inducible repression. One of these exonic elements is similar to an intronic CaMK IV–responsive RNA element (CaRRE) originally identified in the 3′ splice site of the BK channel STREX exon, but not previously observed within an exon. The other element is a new RNA motif. Introduction of either of these two motifs, called CaRRE type 1 and CaRRE type 2, into a heterologous constitutive exon can confer CaMK IV–dependent repression on the new exon. Thus, either exonic CaRRE can be sufficient for CaMK IV–induced repression. Single nucleotide scanning mutagenesis defined consensus sequences for these two CaRRE motifs. A genome-wide motif search and subsequent RT-PCR validation identified a group of depolarization-regulated alternative exons carrying CaRRE consensus sequences. Many of these exons are likely to alter neuronal function. Thus, these two RNA elements define a group of co-regulated splicing events that respond to a common stimulus in neurons to alter their activity.
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spelling pubmed-17909502007-02-06 Depolarization and CaM Kinase IV Modulate NMDA Receptor Splicing through Two Essential RNA Elements Lee, Ji-Ann Xing, Yi Nguyen, David Xie, Jiuyong Lee, Christopher J Black, Douglas L PLoS Biol Research Article Alternative splicing controls the activity of many proteins important for neuronal excitation, but the signal-transduction pathways that affect spliced isoform expression are not well understood. One particularly interesting system of alternative splicing is exon 21 (E21) of the NMDA receptor 1 (NMDAR1 E21), which controls the trafficking of NMDA receptors to the plasma membrane and is repressed by Ca(++)/calmodulin-dependent protein kinase (CaMK) IV signaling. Here, we characterize the splicing of NMDAR1 E21. We find that E21 splicing is reversibly repressed by neuronal depolarization, and we identify two RNA elements within the exon that function together to mediate the inducible repression. One of these exonic elements is similar to an intronic CaMK IV–responsive RNA element (CaRRE) originally identified in the 3′ splice site of the BK channel STREX exon, but not previously observed within an exon. The other element is a new RNA motif. Introduction of either of these two motifs, called CaRRE type 1 and CaRRE type 2, into a heterologous constitutive exon can confer CaMK IV–dependent repression on the new exon. Thus, either exonic CaRRE can be sufficient for CaMK IV–induced repression. Single nucleotide scanning mutagenesis defined consensus sequences for these two CaRRE motifs. A genome-wide motif search and subsequent RT-PCR validation identified a group of depolarization-regulated alternative exons carrying CaRRE consensus sequences. Many of these exons are likely to alter neuronal function. Thus, these two RNA elements define a group of co-regulated splicing events that respond to a common stimulus in neurons to alter their activity. Public Library of Science 2007-02 2007-02-06 /pmc/articles/PMC1790950/ /pubmed/17298178 http://dx.doi.org/10.1371/journal.pbio.0050040 Text en © 2007 Lee 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Lee, Ji-Ann
Xing, Yi
Nguyen, David
Xie, Jiuyong
Lee, Christopher J
Black, Douglas L
Depolarization and CaM Kinase IV Modulate NMDA Receptor Splicing through Two Essential RNA Elements
title Depolarization and CaM Kinase IV Modulate NMDA Receptor Splicing through Two Essential RNA Elements
title_full Depolarization and CaM Kinase IV Modulate NMDA Receptor Splicing through Two Essential RNA Elements
title_fullStr Depolarization and CaM Kinase IV Modulate NMDA Receptor Splicing through Two Essential RNA Elements
title_full_unstemmed Depolarization and CaM Kinase IV Modulate NMDA Receptor Splicing through Two Essential RNA Elements
title_short Depolarization and CaM Kinase IV Modulate NMDA Receptor Splicing through Two Essential RNA Elements
title_sort depolarization and cam kinase iv modulate nmda receptor splicing through two essential rna elements
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1790950/
https://www.ncbi.nlm.nih.gov/pubmed/17298178
http://dx.doi.org/10.1371/journal.pbio.0050040
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