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Knockout of Slc25a19 causes mitochondrial thiamine pyrophosphate depletion, embryonic lethality, CNS malformations, and anemia.
- Source :
-
Proceedings of the National Academy of Sciences of the United States of America [Proc Natl Acad Sci U S A] 2006 Oct 24; Vol. 103 (43), pp. 15927-32. Date of Electronic Publication: 2006 Oct 11. - Publication Year :
- 2006
-
Abstract
- SLC25A19 mutations cause Amish lethal microcephaly (MCPHA), which markedly retards brain development and leads to alpha-ketoglutaric aciduria. Previous data suggested that SLC25A19, also called DNC, is a mitochondrial deoxyribonucleotide transporter. We generated a knockout mouse model of Slc25a19. These animals had 100% prenatal lethality by embryonic day 12. Affected embryos at embryonic day 10.5 have a neural-tube closure defect with ruffling of the neural fold ridges, a yolk sac erythropoietic failure, and elevated alpha-ketoglutarate in the amniotic fluid. We found that these animals have normal mitochondrial ribo- and deoxyribonucleoside triphosphate levels, suggesting that transport of these molecules is not the primary role of SLC25A19. We identified thiamine pyrophosphate (ThPP) transport as a candidate function of SLC25A19 through homology searching and confirmed it by using transport assays of the recombinant reconstituted protein. The mitochondria of Slc25a19(-/-) and MCPHA cells have undetectable and markedly reduced ThPP content, respectively. The reduction of ThPP levels causes dysfunction of the alpha-ketoglutarate dehydrogenase complex, which explains the high levels of this organic acid in MCPHA and suggests that mitochondrial ThPP transport is important for CNS development.
- Subjects :
- Anemia congenital
Anemia genetics
Animals
Anion Transport Proteins deficiency
Anion Transport Proteins genetics
Embryo Loss genetics
Embryo, Mammalian embryology
Embryo, Mammalian metabolism
Ketoglutaric Acids metabolism
Membrane Transport Proteins deficiency
Membrane Transport Proteins genetics
Mice
Mice, Knockout
Mitochondrial Membrane Transport Proteins
Mitochondrial Proteins deficiency
Mitochondrial Proteins genetics
Mutation genetics
Thiamine Pyrophosphate deficiency
Anemia metabolism
Anion Transport Proteins metabolism
Central Nervous System abnormalities
Central Nervous System metabolism
Embryo Loss metabolism
Membrane Transport Proteins metabolism
Mitochondria metabolism
Mitochondrial Proteins metabolism
Thiamine Pyrophosphate metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 0027-8424
- Volume :
- 103
- Issue :
- 43
- Database :
- MEDLINE
- Journal :
- Proceedings of the National Academy of Sciences of the United States of America
- Publication Type :
- Academic Journal
- Accession number :
- 17035501
- Full Text :
- https://doi.org/10.1073/pnas.0607661103