LRPPRC is necessary for polyadenylation and coordination of translation of mitochondrial mRNAs Journal Article


Authors: Ruzzenente, B.; Metodiev, M. D.; Wredenberg, A.; Bratic, A.; Park, C. B.; Cámara, Y.; Milenkovic, D.; Zickermann, V.; Wibom, R.; Hultenby, K.; Erdjument-Bromage, H.; Tempst, P.; Brandt, U.; Stewart, J. B.; Gustafsson, C. M.; Larsson, N. G.
Article Title: LRPPRC is necessary for polyadenylation and coordination of translation of mitochondrial mRNAs
Abstract: Regulation of mtDNA expression is critical for maintaining cellular energy homeostasis and may, in principle, occur at many different levels. The leucine-rich pentatricopeptide repeat containing (LRPPRC) protein regulates mitochondrial mRNA stability and an amino-acid substitution of this protein causes the French-Canadian type of Leigh syndrome (LSFC), a neurodegenerative disorder characterized by complex IV deficiency. We have generated conditional Lrpprc knockout mice and show here that the gene is essential for embryonic development. Tissue-specific disruption of Lrpprc in heart causes mitochondrial cardiomyopathy with drastic reduction in steady-state levels of most mitochondrial mRNAs. LRPPRC forms an RNA-dependent protein complex that is necessary for maintaining a pool of non-translated mRNAs in mammalian mitochondria. Loss of LRPPRC does not only decrease mRNA stability, but also leads to loss of mRNA polyadenylation and the appearance of aberrant mitochondrial translation. The translation pattern without the presence of LRPPRC is misregulated with excessive translation of some transcripts and no translation of others. Our findings point to the existence of an elaborate machinery that regulates mammalian mtDNA expression at the post-transcriptional level. © 2012 European Molecular Biology Organization | All Rights Reserved.
Keywords: controlled study; unclassified drug; nonhuman; animal cell; mouse; mammalia; mus; steady state; embryo; protein depletion; embryo development; messenger rna; rna stability; mitochondrial protein; mitochondria; cardiomyopathy; mammal cell; polyadenylation; translation regulation; leigh syndrome french canadian variant; lrpprc; slirp; leucine rich pentatricopeptide repeat containing protein; mitochondrial rna; cytochrome c oxidase deficiency
Journal Title: EMBO Journal
Volume: 31
Issue: 2
ISSN: 0261-4189
Publisher: Wiley Blackwell  
Date Published: 2011-11-01
Start Page: 443
End Page: 456
Language: English
DOI: 10.1038/emboj.2011.392
PROVIDER: scopus
PMCID: PMC3261557
PUBMED: 22045337
DOI/URL:
Notes: --- - "Cited By (since 1996): 1" - "Export Date: 2 April 2012" - "CODEN: EMJOD" - "Source: Scopus"
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  1. Paul J Tempst
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