Cargando…

Profound analgesia is associated with a truncated peptide resulting from tissue specific alternative splicing of DRG CA8-204 regulated by an exon-level cis-eQTL

Carbonic anhydrase-8 (CA8) is an intracellular protein that functions as an allosteric inhibitor of inositol trisphosphate receptor-1 (ITPR1) critical to intracellular Ca(++) release, synaptic functions and neuronal excitability. We showed previously that murine nociception and analgesic responses a...

Descripción completa

Detalles Bibliográficos
Autores principales: Upadhyay, Udita, Zhuang, Gerald Z., Diatchenko, Luda, Parisien, Marc, Kang, Yuan, Sarantopoulos, Konstantinos D., Martin, Eden R., Smith, Shad B., Maixner, William, Levitt, Roy C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6615631/
https://www.ncbi.nlm.nih.gov/pubmed/31199789
http://dx.doi.org/10.1371/journal.pgen.1008226
_version_ 1783433387514527744
author Upadhyay, Udita
Zhuang, Gerald Z.
Diatchenko, Luda
Parisien, Marc
Kang, Yuan
Sarantopoulos, Konstantinos D.
Martin, Eden R.
Smith, Shad B.
Maixner, William
Levitt, Roy C.
author_facet Upadhyay, Udita
Zhuang, Gerald Z.
Diatchenko, Luda
Parisien, Marc
Kang, Yuan
Sarantopoulos, Konstantinos D.
Martin, Eden R.
Smith, Shad B.
Maixner, William
Levitt, Roy C.
author_sort Upadhyay, Udita
collection PubMed
description Carbonic anhydrase-8 (CA8) is an intracellular protein that functions as an allosteric inhibitor of inositol trisphosphate receptor-1 (ITPR1) critical to intracellular Ca(++) release, synaptic functions and neuronal excitability. We showed previously that murine nociception and analgesic responses are regulated by the expression of this gene in dorsal root ganglion (DRG) associated with a cis-eQTL. In this report, we identify an exon-level cis-eQTL (rs6471859) that regulates human DRG CA8 alternative splicing, producing a truncated 1,697bp transcript (e.g., CA8-204). Our functional genomic studies show the “G” allele at rs6471859 produces a cryptic 3’UTR splice site regulating expression of CA8-204. We developed constructs to study the expression and function of the naturally occurring CA8-204(G) transcript (G allele at rs6471859), CA8-204(C) (C allele at rs6471859 reversion mutation) and CA8-201 (full length transcript). CA8-204(G) transcript expression occurred predominantly in non-neuronal cells (HEK293), while CA8-204(C) expression was restricted to neuronal derived cells (NBL) in vitro. CA8-204(G) produced a stable truncated transcript in HEK293 cells that was barely detectable in NBL cells. We also show CA8-204 produces a stable peptide that inhibits pITPR1 and Ca(++) release in HEK293 cells. These results imply homozygous G/G individuals at rs6471859, which are common in the general population, produce exclusively CA8-204(G) that is barely detectable in neuronal cells. CA8 null mutations that greatly impact neuronal functions are associated with severe forms of spinal cerebellar ataxia, and our data suggest G/G homozygotes should display a similar phenotype. To address this question, we show in vivo using AAV8-FLAG-CA8-204(G) and AAV8-V5-CA8-201 gene transfer delivered via intra-neural sciatic nerve injection (SN), that these viral constructs are able to transduce DRG cells and produce similar analgesic and anti-hyperalgesic responses to inflammatory pain. Immunohistochemistry (IHC) examinations of DRG tissues further show CA8-204(G) peptide is expressed in advillin expressing neuronal cells, but to a lesser extent compared to glial cells. These findings explain why G/G homozygotes that exclusively produce this truncated functional peptide in DRG evade a severe phenotype. These genomic studies significantly advance the literature regarding structure-function studies on CA8-ITPR1 critical to calcium signaling pathways, synaptic functioning, neuronal excitability and analgesic responses.
format Online
Article
Text
id pubmed-6615631
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-66156312019-07-25 Profound analgesia is associated with a truncated peptide resulting from tissue specific alternative splicing of DRG CA8-204 regulated by an exon-level cis-eQTL Upadhyay, Udita Zhuang, Gerald Z. Diatchenko, Luda Parisien, Marc Kang, Yuan Sarantopoulos, Konstantinos D. Martin, Eden R. Smith, Shad B. Maixner, William Levitt, Roy C. PLoS Genet Research Article Carbonic anhydrase-8 (CA8) is an intracellular protein that functions as an allosteric inhibitor of inositol trisphosphate receptor-1 (ITPR1) critical to intracellular Ca(++) release, synaptic functions and neuronal excitability. We showed previously that murine nociception and analgesic responses are regulated by the expression of this gene in dorsal root ganglion (DRG) associated with a cis-eQTL. In this report, we identify an exon-level cis-eQTL (rs6471859) that regulates human DRG CA8 alternative splicing, producing a truncated 1,697bp transcript (e.g., CA8-204). Our functional genomic studies show the “G” allele at rs6471859 produces a cryptic 3’UTR splice site regulating expression of CA8-204. We developed constructs to study the expression and function of the naturally occurring CA8-204(G) transcript (G allele at rs6471859), CA8-204(C) (C allele at rs6471859 reversion mutation) and CA8-201 (full length transcript). CA8-204(G) transcript expression occurred predominantly in non-neuronal cells (HEK293), while CA8-204(C) expression was restricted to neuronal derived cells (NBL) in vitro. CA8-204(G) produced a stable truncated transcript in HEK293 cells that was barely detectable in NBL cells. We also show CA8-204 produces a stable peptide that inhibits pITPR1 and Ca(++) release in HEK293 cells. These results imply homozygous G/G individuals at rs6471859, which are common in the general population, produce exclusively CA8-204(G) that is barely detectable in neuronal cells. CA8 null mutations that greatly impact neuronal functions are associated with severe forms of spinal cerebellar ataxia, and our data suggest G/G homozygotes should display a similar phenotype. To address this question, we show in vivo using AAV8-FLAG-CA8-204(G) and AAV8-V5-CA8-201 gene transfer delivered via intra-neural sciatic nerve injection (SN), that these viral constructs are able to transduce DRG cells and produce similar analgesic and anti-hyperalgesic responses to inflammatory pain. Immunohistochemistry (IHC) examinations of DRG tissues further show CA8-204(G) peptide is expressed in advillin expressing neuronal cells, but to a lesser extent compared to glial cells. These findings explain why G/G homozygotes that exclusively produce this truncated functional peptide in DRG evade a severe phenotype. These genomic studies significantly advance the literature regarding structure-function studies on CA8-ITPR1 critical to calcium signaling pathways, synaptic functioning, neuronal excitability and analgesic responses. Public Library of Science 2019-06-14 /pmc/articles/PMC6615631/ /pubmed/31199789 http://dx.doi.org/10.1371/journal.pgen.1008226 Text en © 2019 Upadhyay 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
Upadhyay, Udita
Zhuang, Gerald Z.
Diatchenko, Luda
Parisien, Marc
Kang, Yuan
Sarantopoulos, Konstantinos D.
Martin, Eden R.
Smith, Shad B.
Maixner, William
Levitt, Roy C.
Profound analgesia is associated with a truncated peptide resulting from tissue specific alternative splicing of DRG CA8-204 regulated by an exon-level cis-eQTL
title Profound analgesia is associated with a truncated peptide resulting from tissue specific alternative splicing of DRG CA8-204 regulated by an exon-level cis-eQTL
title_full Profound analgesia is associated with a truncated peptide resulting from tissue specific alternative splicing of DRG CA8-204 regulated by an exon-level cis-eQTL
title_fullStr Profound analgesia is associated with a truncated peptide resulting from tissue specific alternative splicing of DRG CA8-204 regulated by an exon-level cis-eQTL
title_full_unstemmed Profound analgesia is associated with a truncated peptide resulting from tissue specific alternative splicing of DRG CA8-204 regulated by an exon-level cis-eQTL
title_short Profound analgesia is associated with a truncated peptide resulting from tissue specific alternative splicing of DRG CA8-204 regulated by an exon-level cis-eQTL
title_sort profound analgesia is associated with a truncated peptide resulting from tissue specific alternative splicing of drg ca8-204 regulated by an exon-level cis-eqtl
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6615631/
https://www.ncbi.nlm.nih.gov/pubmed/31199789
http://dx.doi.org/10.1371/journal.pgen.1008226
work_keys_str_mv AT upadhyayudita profoundanalgesiaisassociatedwithatruncatedpeptideresultingfromtissuespecificalternativesplicingofdrgca8204regulatedbyanexonlevelciseqtl
AT zhuanggeraldz profoundanalgesiaisassociatedwithatruncatedpeptideresultingfromtissuespecificalternativesplicingofdrgca8204regulatedbyanexonlevelciseqtl
AT diatchenkoluda profoundanalgesiaisassociatedwithatruncatedpeptideresultingfromtissuespecificalternativesplicingofdrgca8204regulatedbyanexonlevelciseqtl
AT parisienmarc profoundanalgesiaisassociatedwithatruncatedpeptideresultingfromtissuespecificalternativesplicingofdrgca8204regulatedbyanexonlevelciseqtl
AT kangyuan profoundanalgesiaisassociatedwithatruncatedpeptideresultingfromtissuespecificalternativesplicingofdrgca8204regulatedbyanexonlevelciseqtl
AT sarantopouloskonstantinosd profoundanalgesiaisassociatedwithatruncatedpeptideresultingfromtissuespecificalternativesplicingofdrgca8204regulatedbyanexonlevelciseqtl
AT martinedenr profoundanalgesiaisassociatedwithatruncatedpeptideresultingfromtissuespecificalternativesplicingofdrgca8204regulatedbyanexonlevelciseqtl
AT smithshadb profoundanalgesiaisassociatedwithatruncatedpeptideresultingfromtissuespecificalternativesplicingofdrgca8204regulatedbyanexonlevelciseqtl
AT maixnerwilliam profoundanalgesiaisassociatedwithatruncatedpeptideresultingfromtissuespecificalternativesplicingofdrgca8204regulatedbyanexonlevelciseqtl
AT levittroyc profoundanalgesiaisassociatedwithatruncatedpeptideresultingfromtissuespecificalternativesplicingofdrgca8204regulatedbyanexonlevelciseqtl