Epistasis-driven identification of SLC25A51 as a regulator of human mitochondrial NAD import
Maintenance of a mitochondrial NAD+ pool is critical for cellular life, yet the existence and identity of the transporter responsible for mitochondrial NAD+ uptake was unknown until recently. Here, the authors use genomic, genetic, and metabolomic approaches to demonstrate that SLC25A51 controls NAD...
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Nature Portfolio
2020
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oai:doaj.org-article:e8ac6a683e1a429f8d643e2061a128352021-12-02T15:37:10ZEpistasis-driven identification of SLC25A51 as a regulator of human mitochondrial NAD import10.1038/s41467-020-19871-x2041-1723https://doaj.org/article/e8ac6a683e1a429f8d643e2061a128352020-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19871-xhttps://doaj.org/toc/2041-1723Maintenance of a mitochondrial NAD+ pool is critical for cellular life, yet the existence and identity of the transporter responsible for mitochondrial NAD+ uptake was unknown until recently. Here, the authors use genomic, genetic, and metabolomic approaches to demonstrate that SLC25A51 controls NAD+ mitochondrial levels and is the functional homolog of the yeast mitochondrial NAD+ transporter.Enrico GirardiGennaro AgrimiUlrich GoldmannGiuseppe FiumeSabrina LindingerVitaly SedlyarovIsmet SrndicBettina GürtlBenedikt AgererFelix KartnigPasquale ScarciaMaria Antonietta Di NoiaEva LiñeiroManuele RebsamenTabea WiedmerAndreas BergthalerLuigi PalmieriGiulio Superti-FurgaNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020) |
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Science Q Enrico Girardi Gennaro Agrimi Ulrich Goldmann Giuseppe Fiume Sabrina Lindinger Vitaly Sedlyarov Ismet Srndic Bettina Gürtl Benedikt Agerer Felix Kartnig Pasquale Scarcia Maria Antonietta Di Noia Eva Liñeiro Manuele Rebsamen Tabea Wiedmer Andreas Bergthaler Luigi Palmieri Giulio Superti-Furga Epistasis-driven identification of SLC25A51 as a regulator of human mitochondrial NAD import |
description |
Maintenance of a mitochondrial NAD+ pool is critical for cellular life, yet the existence and identity of the transporter responsible for mitochondrial NAD+ uptake was unknown until recently. Here, the authors use genomic, genetic, and metabolomic approaches to demonstrate that SLC25A51 controls NAD+ mitochondrial levels and is the functional homolog of the yeast mitochondrial NAD+ transporter. |
format |
article |
author |
Enrico Girardi Gennaro Agrimi Ulrich Goldmann Giuseppe Fiume Sabrina Lindinger Vitaly Sedlyarov Ismet Srndic Bettina Gürtl Benedikt Agerer Felix Kartnig Pasquale Scarcia Maria Antonietta Di Noia Eva Liñeiro Manuele Rebsamen Tabea Wiedmer Andreas Bergthaler Luigi Palmieri Giulio Superti-Furga |
author_facet |
Enrico Girardi Gennaro Agrimi Ulrich Goldmann Giuseppe Fiume Sabrina Lindinger Vitaly Sedlyarov Ismet Srndic Bettina Gürtl Benedikt Agerer Felix Kartnig Pasquale Scarcia Maria Antonietta Di Noia Eva Liñeiro Manuele Rebsamen Tabea Wiedmer Andreas Bergthaler Luigi Palmieri Giulio Superti-Furga |
author_sort |
Enrico Girardi |
title |
Epistasis-driven identification of SLC25A51 as a regulator of human mitochondrial NAD import |
title_short |
Epistasis-driven identification of SLC25A51 as a regulator of human mitochondrial NAD import |
title_full |
Epistasis-driven identification of SLC25A51 as a regulator of human mitochondrial NAD import |
title_fullStr |
Epistasis-driven identification of SLC25A51 as a regulator of human mitochondrial NAD import |
title_full_unstemmed |
Epistasis-driven identification of SLC25A51 as a regulator of human mitochondrial NAD import |
title_sort |
epistasis-driven identification of slc25a51 as a regulator of human mitochondrial nad import |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/e8ac6a683e1a429f8d643e2061a12835 |
work_keys_str_mv |
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