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Mitochondrial Uptake of Thiamin Pyrophosphate: Physiological and Cell Biological Aspects

Mammalian cells obtain vitamin B1 (thiamin) from their surrounding environment and convert it to thiamin pyrophosphate (TPP) in the cytoplasm. Most of TPP is then transported into the mitochondria via a carrier-mediated process that involves the mitochondrial thiamin pyrophosphate transporter (MTPPT...

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Autores principales: Subramanian, Veedamali S., Nabokina, Svetlana M., Lin-Moshier, Yaping, Marchant, Jonathan S., Said, Hamid M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3758298/
https://www.ncbi.nlm.nih.gov/pubmed/24023687
http://dx.doi.org/10.1371/journal.pone.0073503
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author Subramanian, Veedamali S.
Nabokina, Svetlana M.
Lin-Moshier, Yaping
Marchant, Jonathan S.
Said, Hamid M.
author_facet Subramanian, Veedamali S.
Nabokina, Svetlana M.
Lin-Moshier, Yaping
Marchant, Jonathan S.
Said, Hamid M.
author_sort Subramanian, Veedamali S.
collection PubMed
description Mammalian cells obtain vitamin B1 (thiamin) from their surrounding environment and convert it to thiamin pyrophosphate (TPP) in the cytoplasm. Most of TPP is then transported into the mitochondria via a carrier-mediated process that involves the mitochondrial thiamin pyrophosphate transporter (MTPPT). Knowledge about the physiological parameters of the MTPP-mediated uptake process, MTPPT targeting and the impact of clinical mutations in MTPPT in patients with Amish lethal microcephaly and neuropathy and bilateral striatal necrosis are not fully elucidated, and thus, were addressed in this study using custom-made (3)H-TPP as a substrate and mitochondria isolated from mouse liver and human-derived liver HepG2 cells. Results showed (3)H-TPP uptake by mouse liver mitochondria to be pH-independent, saturable (K(m = )6.79±0.53 µM), and specific for TPP. MTPPT protein was expressed in mouse liver and HepG2 cells, and confocal images showed a human (h)MTPPT-GFP construct to be targeted to mitochondria of HepG2 cells. A serial truncation analysis revealed that all three modules of hMTPPT protein cooperated (although at different levels of efficiency) in mitochondrial targeting rather than acting autonomously as independent targeting module. Finally, the hMTPPT clinical mutants (G125S and G177A) showed proper mitochondrial targeting but displayed significant inhibition in (3)H-TPP uptake and a decrease in level of expression of the MTPPT protein. These findings advance our knowledge of the physiology and cell biology of the mitochondrial TPP uptake process. The results also show that clinical mutations in the hMTPPT system impair its functionality via affecting its level of expression with no effect on its targeting to mitochondria.
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spelling pubmed-37582982013-09-10 Mitochondrial Uptake of Thiamin Pyrophosphate: Physiological and Cell Biological Aspects Subramanian, Veedamali S. Nabokina, Svetlana M. Lin-Moshier, Yaping Marchant, Jonathan S. Said, Hamid M. PLoS One Research Article Mammalian cells obtain vitamin B1 (thiamin) from their surrounding environment and convert it to thiamin pyrophosphate (TPP) in the cytoplasm. Most of TPP is then transported into the mitochondria via a carrier-mediated process that involves the mitochondrial thiamin pyrophosphate transporter (MTPPT). Knowledge about the physiological parameters of the MTPP-mediated uptake process, MTPPT targeting and the impact of clinical mutations in MTPPT in patients with Amish lethal microcephaly and neuropathy and bilateral striatal necrosis are not fully elucidated, and thus, were addressed in this study using custom-made (3)H-TPP as a substrate and mitochondria isolated from mouse liver and human-derived liver HepG2 cells. Results showed (3)H-TPP uptake by mouse liver mitochondria to be pH-independent, saturable (K(m = )6.79±0.53 µM), and specific for TPP. MTPPT protein was expressed in mouse liver and HepG2 cells, and confocal images showed a human (h)MTPPT-GFP construct to be targeted to mitochondria of HepG2 cells. A serial truncation analysis revealed that all three modules of hMTPPT protein cooperated (although at different levels of efficiency) in mitochondrial targeting rather than acting autonomously as independent targeting module. Finally, the hMTPPT clinical mutants (G125S and G177A) showed proper mitochondrial targeting but displayed significant inhibition in (3)H-TPP uptake and a decrease in level of expression of the MTPPT protein. These findings advance our knowledge of the physiology and cell biology of the mitochondrial TPP uptake process. The results also show that clinical mutations in the hMTPPT system impair its functionality via affecting its level of expression with no effect on its targeting to mitochondria. Public Library of Science 2013-08-30 /pmc/articles/PMC3758298/ /pubmed/24023687 http://dx.doi.org/10.1371/journal.pone.0073503 Text en © 2013 Subramanian 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Subramanian, Veedamali S.
Nabokina, Svetlana M.
Lin-Moshier, Yaping
Marchant, Jonathan S.
Said, Hamid M.
Mitochondrial Uptake of Thiamin Pyrophosphate: Physiological and Cell Biological Aspects
title Mitochondrial Uptake of Thiamin Pyrophosphate: Physiological and Cell Biological Aspects
title_full Mitochondrial Uptake of Thiamin Pyrophosphate: Physiological and Cell Biological Aspects
title_fullStr Mitochondrial Uptake of Thiamin Pyrophosphate: Physiological and Cell Biological Aspects
title_full_unstemmed Mitochondrial Uptake of Thiamin Pyrophosphate: Physiological and Cell Biological Aspects
title_short Mitochondrial Uptake of Thiamin Pyrophosphate: Physiological and Cell Biological Aspects
title_sort mitochondrial uptake of thiamin pyrophosphate: physiological and cell biological aspects
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3758298/
https://www.ncbi.nlm.nih.gov/pubmed/24023687
http://dx.doi.org/10.1371/journal.pone.0073503
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