Cargando…

A human mitochondrial poly(A) polymerase mutation reveals the complexities of post-transcriptional mitochondrial gene expression

The p.N478D missense mutation in human mitochondrial poly(A) polymerase (mtPAP) has previously been implicated in a form of spastic ataxia with optic atrophy. In this study, we have investigated fibroblast cell lines established from family members. The homozygous mutation resulted in the loss of po...

Descripción completa

Detalles Bibliográficos
Autores principales: Wilson, William C., Hornig-Do, Hue-Tran, Bruni, Francesco, Chang, Jeong Ho, Jourdain, Alexis A., Martinou, Jean-Claude, Falkenberg, Maria, Spåhr, Henrik, Larsson, Nils-Göran, Lewis, Richard J., Hewitt, Lorraine, Baslé, Arnaud, Cross, Harold E., Tong, Liang, Lebel, Robert R., Crosby, Andrew H., Chrzanowska-Lightowlers, Zofia M. A., Lightowlers, Robert N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4222368/
https://www.ncbi.nlm.nih.gov/pubmed/25008111
http://dx.doi.org/10.1093/hmg/ddu352
_version_ 1782343024740663296
author Wilson, William C.
Hornig-Do, Hue-Tran
Bruni, Francesco
Chang, Jeong Ho
Jourdain, Alexis A.
Martinou, Jean-Claude
Falkenberg, Maria
Spåhr, Henrik
Larsson, Nils-Göran
Lewis, Richard J.
Hewitt, Lorraine
Baslé, Arnaud
Cross, Harold E.
Tong, Liang
Lebel, Robert R.
Crosby, Andrew H.
Chrzanowska-Lightowlers, Zofia M. A.
Lightowlers, Robert N.
author_facet Wilson, William C.
Hornig-Do, Hue-Tran
Bruni, Francesco
Chang, Jeong Ho
Jourdain, Alexis A.
Martinou, Jean-Claude
Falkenberg, Maria
Spåhr, Henrik
Larsson, Nils-Göran
Lewis, Richard J.
Hewitt, Lorraine
Baslé, Arnaud
Cross, Harold E.
Tong, Liang
Lebel, Robert R.
Crosby, Andrew H.
Chrzanowska-Lightowlers, Zofia M. A.
Lightowlers, Robert N.
author_sort Wilson, William C.
collection PubMed
description The p.N478D missense mutation in human mitochondrial poly(A) polymerase (mtPAP) has previously been implicated in a form of spastic ataxia with optic atrophy. In this study, we have investigated fibroblast cell lines established from family members. The homozygous mutation resulted in the loss of polyadenylation of all mitochondrial transcripts assessed; however, oligoadenylation was retained. Interestingly, this had differential effects on transcript stability that were dependent on the particular species of transcript. These changes were accompanied by a severe loss of oxidative phosphorylation complexes I and IV, and perturbation of de novo mitochondrial protein synthesis. Decreases in transcript polyadenylation and in respiratory chain complexes were effectively rescued by overexpression of wild-type mtPAP. Both mutated and wild-type mtPAP localized to the mitochondrial RNA-processing granules thereby eliminating mislocalization as a cause of defective polyadenylation. In vitro polyadenylation assays revealed severely compromised activity by the mutated protein, which generated only short oligo(A) extensions on RNA substrates, irrespective of RNA secondary structure. The addition of LRPPRC/SLIRP, a mitochondrial RNA-binding complex, enhanced activity of the wild-type mtPAP resulting in increased overall tail length. The LRPPRC/SLIRP effect although present was less marked with mutated mtPAP, independent of RNA secondary structure. We conclude that (i) the polymerase activity of mtPAP can be modulated by the presence of LRPPRC/SLIRP, (ii) N478D mtPAP mutation decreases polymerase activity and (iii) the alteration in poly(A) length is sufficient to cause dysregulation of post-transcriptional expression and the pathogenic lack of respiratory chain complexes.
format Online
Article
Text
id pubmed-4222368
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-42223682014-11-10 A human mitochondrial poly(A) polymerase mutation reveals the complexities of post-transcriptional mitochondrial gene expression Wilson, William C. Hornig-Do, Hue-Tran Bruni, Francesco Chang, Jeong Ho Jourdain, Alexis A. Martinou, Jean-Claude Falkenberg, Maria Spåhr, Henrik Larsson, Nils-Göran Lewis, Richard J. Hewitt, Lorraine Baslé, Arnaud Cross, Harold E. Tong, Liang Lebel, Robert R. Crosby, Andrew H. Chrzanowska-Lightowlers, Zofia M. A. Lightowlers, Robert N. Hum Mol Genet Articles The p.N478D missense mutation in human mitochondrial poly(A) polymerase (mtPAP) has previously been implicated in a form of spastic ataxia with optic atrophy. In this study, we have investigated fibroblast cell lines established from family members. The homozygous mutation resulted in the loss of polyadenylation of all mitochondrial transcripts assessed; however, oligoadenylation was retained. Interestingly, this had differential effects on transcript stability that were dependent on the particular species of transcript. These changes were accompanied by a severe loss of oxidative phosphorylation complexes I and IV, and perturbation of de novo mitochondrial protein synthesis. Decreases in transcript polyadenylation and in respiratory chain complexes were effectively rescued by overexpression of wild-type mtPAP. Both mutated and wild-type mtPAP localized to the mitochondrial RNA-processing granules thereby eliminating mislocalization as a cause of defective polyadenylation. In vitro polyadenylation assays revealed severely compromised activity by the mutated protein, which generated only short oligo(A) extensions on RNA substrates, irrespective of RNA secondary structure. The addition of LRPPRC/SLIRP, a mitochondrial RNA-binding complex, enhanced activity of the wild-type mtPAP resulting in increased overall tail length. The LRPPRC/SLIRP effect although present was less marked with mutated mtPAP, independent of RNA secondary structure. We conclude that (i) the polymerase activity of mtPAP can be modulated by the presence of LRPPRC/SLIRP, (ii) N478D mtPAP mutation decreases polymerase activity and (iii) the alteration in poly(A) length is sufficient to cause dysregulation of post-transcriptional expression and the pathogenic lack of respiratory chain complexes. Oxford University Press 2014-12-01 2014-07-09 /pmc/articles/PMC4222368/ /pubmed/25008111 http://dx.doi.org/10.1093/hmg/ddu352 Text en © The Author 2014. Published by Oxford University Press 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 reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Wilson, William C.
Hornig-Do, Hue-Tran
Bruni, Francesco
Chang, Jeong Ho
Jourdain, Alexis A.
Martinou, Jean-Claude
Falkenberg, Maria
Spåhr, Henrik
Larsson, Nils-Göran
Lewis, Richard J.
Hewitt, Lorraine
Baslé, Arnaud
Cross, Harold E.
Tong, Liang
Lebel, Robert R.
Crosby, Andrew H.
Chrzanowska-Lightowlers, Zofia M. A.
Lightowlers, Robert N.
A human mitochondrial poly(A) polymerase mutation reveals the complexities of post-transcriptional mitochondrial gene expression
title A human mitochondrial poly(A) polymerase mutation reveals the complexities of post-transcriptional mitochondrial gene expression
title_full A human mitochondrial poly(A) polymerase mutation reveals the complexities of post-transcriptional mitochondrial gene expression
title_fullStr A human mitochondrial poly(A) polymerase mutation reveals the complexities of post-transcriptional mitochondrial gene expression
title_full_unstemmed A human mitochondrial poly(A) polymerase mutation reveals the complexities of post-transcriptional mitochondrial gene expression
title_short A human mitochondrial poly(A) polymerase mutation reveals the complexities of post-transcriptional mitochondrial gene expression
title_sort human mitochondrial poly(a) polymerase mutation reveals the complexities of post-transcriptional mitochondrial gene expression
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4222368/
https://www.ncbi.nlm.nih.gov/pubmed/25008111
http://dx.doi.org/10.1093/hmg/ddu352
work_keys_str_mv AT wilsonwilliamc ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT hornigdohuetran ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT brunifrancesco ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT changjeongho ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT jourdainalexisa ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT martinoujeanclaude ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT falkenbergmaria ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT spahrhenrik ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT larssonnilsgoran ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT lewisrichardj ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT hewittlorraine ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT baslearnaud ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT crossharolde ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT tongliang ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT lebelrobertr ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT crosbyandrewh ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT chrzanowskalightowlerszofiama ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT lightowlersrobertn ahumanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT wilsonwilliamc humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT hornigdohuetran humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT brunifrancesco humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT changjeongho humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT jourdainalexisa humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT martinoujeanclaude humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT falkenbergmaria humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT spahrhenrik humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT larssonnilsgoran humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT lewisrichardj humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT hewittlorraine humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT baslearnaud humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT crossharolde humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT tongliang humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT lebelrobertr humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT crosbyandrewh humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT chrzanowskalightowlerszofiama humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression
AT lightowlersrobertn humanmitochondrialpolyapolymerasemutationrevealsthecomplexitiesofposttranscriptionalmitochondrialgeneexpression