Literature DB >> 25751021

MtDNA mutagenesis impairs elimination of mitochondria during erythroid maturation leading to enhanced erythrocyte destruction.

K J Ahlqvist1, S Leoncini2, A Pecorelli2, S B Wortmann3, S Ahola1, S Forsström1, R Guerranti4, C De Felice5, J Smeitink3, L Ciccoli6, R H Hämäläinen1, A Suomalainen7.   

Abstract

Haematopoietic progenitor cells show special sensitivity to mitochondrial DNA (mtDNA) mutagenesis, which suggests that increased mtDNA mutagenesis could underlie anemias. Here we show that elevated mtDNA mutagenesis in mice with a proof-reading deficient mtDNA polymerase (PolG) leads to incomplete mitochondrial clearance, with asynchronized iron loading in erythroid precursors, and increased total and free cellular iron content. The resulting Fenton chemistry leads to oxidative damage and premature destruction of erythrocytes by splenic macrophages. Our data indicate that mitochondria actively contribute to their own elimination in reticulocytes and modulate iron loading. Asynchrony of this sequence of events causes severe mitochondrial anaemia by depleting the organism of red blood cells and the bone marrow of iron. Our findings account for the anaemia development in a progeroid mouse model and may have direct relevance to the anemias associated with human mitochondrial disease and ageing.

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Year:  2015        PMID: 25751021     DOI: 10.1038/ncomms7494

Source DB:  PubMed          Journal:  Nat Commun        ISSN: 2041-1723            Impact factor:   14.919


  26 in total

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8.  Defects in mtDNA replication challenge nuclear genome stability through nucleotide depletion and provide a unifying mechanism for mouse progerias.

Authors:  Juan C Landoni; Kati J Ahlqvist; Riikka H Hämäläinen; Steffi Goffart; Sanna Ryytty; M Obaidur Rahman; Virginia Brilhante; Katherine Icay; Sampsa Hautaniemi; Liya Wang; Marikki Laiho; Anu Suomalainen
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