Cargando…

An engineered transcriptional reporter of protein localization identifies regulators of mitochondrial and ER membrane protein trafficking in high-throughput CRISPRi screens

The trafficking of specific protein cohorts to correct subcellular locations at correct times is essential for every signaling and regulatory process in biology. Gene perturbation screens could provide a powerful approach to probe the molecular mechanisms of protein trafficking, but only if protein...

Descripción completa

Detalles Bibliográficos
Autores principales: Coukos, Robert, Yao, David, Sanchez, Mateo I, Strand, Eric T, Olive, Meagan E, Udeshi, Namrata D, Weissman, Jonathan S, Carr, Steven A, Bassik, Michael C, Ting, Alice Y
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8423448/
https://www.ncbi.nlm.nih.gov/pubmed/34414886
http://dx.doi.org/10.7554/eLife.69142
_version_ 1783749467308032000
author Coukos, Robert
Yao, David
Sanchez, Mateo I
Strand, Eric T
Olive, Meagan E
Udeshi, Namrata D
Weissman, Jonathan S
Carr, Steven A
Bassik, Michael C
Ting, Alice Y
author_facet Coukos, Robert
Yao, David
Sanchez, Mateo I
Strand, Eric T
Olive, Meagan E
Udeshi, Namrata D
Weissman, Jonathan S
Carr, Steven A
Bassik, Michael C
Ting, Alice Y
author_sort Coukos, Robert
collection PubMed
description The trafficking of specific protein cohorts to correct subcellular locations at correct times is essential for every signaling and regulatory process in biology. Gene perturbation screens could provide a powerful approach to probe the molecular mechanisms of protein trafficking, but only if protein localization or mislocalization can be tied to a simple and robust phenotype for cell selection, such as cell proliferation or fluorescence-activated cell sorting (FACS). To empower the study of protein trafficking processes with gene perturbation, we developed a genetically encoded molecular tool named HiLITR (High-throughput Localization Indicator with Transcriptional Readout). HiLITR converts protein colocalization into proteolytic release of a membrane-anchored transcription factor, which drives the expression of a chosen reporter gene. Using HiLITR in combination with FACS-based CRISPRi screening in human cell lines, we identified genes that influence the trafficking of mitochondrial and ER tail-anchored proteins. We show that loss of the SUMO E1 component SAE1 results in mislocalization and destabilization of many mitochondrial tail-anchored proteins. We also demonstrate a distinct regulatory role for EMC10 in the ER membrane complex, opposing the transmembrane-domain insertion activity of the complex. Through transcriptional integration of complex cellular functions, HiLITR expands the scope of biological processes that can be studied by genetic perturbation screening technologies.
format Online
Article
Text
id pubmed-8423448
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher eLife Sciences Publications, Ltd
record_format MEDLINE/PubMed
spelling pubmed-84234482021-09-09 An engineered transcriptional reporter of protein localization identifies regulators of mitochondrial and ER membrane protein trafficking in high-throughput CRISPRi screens Coukos, Robert Yao, David Sanchez, Mateo I Strand, Eric T Olive, Meagan E Udeshi, Namrata D Weissman, Jonathan S Carr, Steven A Bassik, Michael C Ting, Alice Y eLife Biochemistry and Chemical Biology The trafficking of specific protein cohorts to correct subcellular locations at correct times is essential for every signaling and regulatory process in biology. Gene perturbation screens could provide a powerful approach to probe the molecular mechanisms of protein trafficking, but only if protein localization or mislocalization can be tied to a simple and robust phenotype for cell selection, such as cell proliferation or fluorescence-activated cell sorting (FACS). To empower the study of protein trafficking processes with gene perturbation, we developed a genetically encoded molecular tool named HiLITR (High-throughput Localization Indicator with Transcriptional Readout). HiLITR converts protein colocalization into proteolytic release of a membrane-anchored transcription factor, which drives the expression of a chosen reporter gene. Using HiLITR in combination with FACS-based CRISPRi screening in human cell lines, we identified genes that influence the trafficking of mitochondrial and ER tail-anchored proteins. We show that loss of the SUMO E1 component SAE1 results in mislocalization and destabilization of many mitochondrial tail-anchored proteins. We also demonstrate a distinct regulatory role for EMC10 in the ER membrane complex, opposing the transmembrane-domain insertion activity of the complex. Through transcriptional integration of complex cellular functions, HiLITR expands the scope of biological processes that can be studied by genetic perturbation screening technologies. eLife Sciences Publications, Ltd 2021-08-20 /pmc/articles/PMC8423448/ /pubmed/34414886 http://dx.doi.org/10.7554/eLife.69142 Text en © 2021, Coukos et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Biochemistry and Chemical Biology
Coukos, Robert
Yao, David
Sanchez, Mateo I
Strand, Eric T
Olive, Meagan E
Udeshi, Namrata D
Weissman, Jonathan S
Carr, Steven A
Bassik, Michael C
Ting, Alice Y
An engineered transcriptional reporter of protein localization identifies regulators of mitochondrial and ER membrane protein trafficking in high-throughput CRISPRi screens
title An engineered transcriptional reporter of protein localization identifies regulators of mitochondrial and ER membrane protein trafficking in high-throughput CRISPRi screens
title_full An engineered transcriptional reporter of protein localization identifies regulators of mitochondrial and ER membrane protein trafficking in high-throughput CRISPRi screens
title_fullStr An engineered transcriptional reporter of protein localization identifies regulators of mitochondrial and ER membrane protein trafficking in high-throughput CRISPRi screens
title_full_unstemmed An engineered transcriptional reporter of protein localization identifies regulators of mitochondrial and ER membrane protein trafficking in high-throughput CRISPRi screens
title_short An engineered transcriptional reporter of protein localization identifies regulators of mitochondrial and ER membrane protein trafficking in high-throughput CRISPRi screens
title_sort engineered transcriptional reporter of protein localization identifies regulators of mitochondrial and er membrane protein trafficking in high-throughput crispri screens
topic Biochemistry and Chemical Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8423448/
https://www.ncbi.nlm.nih.gov/pubmed/34414886
http://dx.doi.org/10.7554/eLife.69142
work_keys_str_mv AT coukosrobert anengineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT yaodavid anengineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT sanchezmateoi anengineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT stranderict anengineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT olivemeagane anengineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT udeshinamratad anengineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT weissmanjonathans anengineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT carrstevena anengineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT bassikmichaelc anengineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT tingalicey anengineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT coukosrobert engineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT yaodavid engineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT sanchezmateoi engineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT stranderict engineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT olivemeagane engineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT udeshinamratad engineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT weissmanjonathans engineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT carrstevena engineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT bassikmichaelc engineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens
AT tingalicey engineeredtranscriptionalreporterofproteinlocalizationidentifiesregulatorsofmitochondrialandermembraneproteintraffickinginhighthroughputcrispriscreens