Haploid genetic screens identify SPRING/C12ORF49 as a determinant of SREBP signaling and cholesterol metabolism

The transcription factor SREBP is a well-studied and major regulator of sterol and fatty acid metabolism. Here, the authors used haploid genetic screens to identify the Golgi-resident protein SPRING as a new modulator of SREBP by regulating the level of functional SREBP cleavage-activating protein (...

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Autores principales: Anke Loregger, Matthijs Raaben, Joppe Nieuwenhuis, Josephine M. E. Tan, Lucas T. Jae, Lisa G. van den Hengel, Sebastian Hendrix, Marlene van den Berg, Saskia Scheij, Ji-Ying Song, Ivo J. Huijbers, Lona J. Kroese, Roelof Ottenhoff, Michel van Weeghel, Bart van de Sluis, Thijn Brummelkamp, Noam Zelcer
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/c61323181ab94658810dfa8228b715af
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spelling oai:doaj.org-article:c61323181ab94658810dfa8228b715af2021-12-02T14:41:25ZHaploid genetic screens identify SPRING/C12ORF49 as a determinant of SREBP signaling and cholesterol metabolism10.1038/s41467-020-14811-12041-1723https://doaj.org/article/c61323181ab94658810dfa8228b715af2020-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-14811-1https://doaj.org/toc/2041-1723The transcription factor SREBP is a well-studied and major regulator of sterol and fatty acid metabolism. Here, the authors used haploid genetic screens to identify the Golgi-resident protein SPRING as a new modulator of SREBP by regulating the level of functional SREBP cleavage-activating protein (SCAP).Anke LoreggerMatthijs RaabenJoppe NieuwenhuisJosephine M. E. TanLucas T. JaeLisa G. van den HengelSebastian HendrixMarlene van den BergSaskia ScheijJi-Ying SongIvo J. HuijbersLona J. KroeseRoelof OttenhoffMichel van WeeghelBart van de SluisThijn BrummelkampNoam ZelcerNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-14 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Anke Loregger
Matthijs Raaben
Joppe Nieuwenhuis
Josephine M. E. Tan
Lucas T. Jae
Lisa G. van den Hengel
Sebastian Hendrix
Marlene van den Berg
Saskia Scheij
Ji-Ying Song
Ivo J. Huijbers
Lona J. Kroese
Roelof Ottenhoff
Michel van Weeghel
Bart van de Sluis
Thijn Brummelkamp
Noam Zelcer
Haploid genetic screens identify SPRING/C12ORF49 as a determinant of SREBP signaling and cholesterol metabolism
description The transcription factor SREBP is a well-studied and major regulator of sterol and fatty acid metabolism. Here, the authors used haploid genetic screens to identify the Golgi-resident protein SPRING as a new modulator of SREBP by regulating the level of functional SREBP cleavage-activating protein (SCAP).
format article
author Anke Loregger
Matthijs Raaben
Joppe Nieuwenhuis
Josephine M. E. Tan
Lucas T. Jae
Lisa G. van den Hengel
Sebastian Hendrix
Marlene van den Berg
Saskia Scheij
Ji-Ying Song
Ivo J. Huijbers
Lona J. Kroese
Roelof Ottenhoff
Michel van Weeghel
Bart van de Sluis
Thijn Brummelkamp
Noam Zelcer
author_facet Anke Loregger
Matthijs Raaben
Joppe Nieuwenhuis
Josephine M. E. Tan
Lucas T. Jae
Lisa G. van den Hengel
Sebastian Hendrix
Marlene van den Berg
Saskia Scheij
Ji-Ying Song
Ivo J. Huijbers
Lona J. Kroese
Roelof Ottenhoff
Michel van Weeghel
Bart van de Sluis
Thijn Brummelkamp
Noam Zelcer
author_sort Anke Loregger
title Haploid genetic screens identify SPRING/C12ORF49 as a determinant of SREBP signaling and cholesterol metabolism
title_short Haploid genetic screens identify SPRING/C12ORF49 as a determinant of SREBP signaling and cholesterol metabolism
title_full Haploid genetic screens identify SPRING/C12ORF49 as a determinant of SREBP signaling and cholesterol metabolism
title_fullStr Haploid genetic screens identify SPRING/C12ORF49 as a determinant of SREBP signaling and cholesterol metabolism
title_full_unstemmed Haploid genetic screens identify SPRING/C12ORF49 as a determinant of SREBP signaling and cholesterol metabolism
title_sort haploid genetic screens identify spring/c12orf49 as a determinant of srebp signaling and cholesterol metabolism
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/c61323181ab94658810dfa8228b715af
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