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High-Throughput CRISPR Screening Identifies Genes Involved in Macrophage Viability and Inflammatory Pathways

Macrophages are critical effector cells of the immune system, and understanding genes involved in their viability and function is essential for gaining insights into immune system dysregulation during disease. We use a high-throughput, pooled-based CRISPR-Cas screening approach to identify essential...

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Autores principales: Covarrubias, Sergio, Cortez Vollmers, Apple, Capili, Allyson, Boettcher, Michael, Shulkin, Aaron, Correa, Michele Ramos, Halasz, Haley, Robinson, Elektra K., O’Briain, Laura, Vollmers, Christopher, Blau, James, Katzman, Sol, McManus, Michael T., Carpenter, Susan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7901356/
https://www.ncbi.nlm.nih.gov/pubmed/33378675
http://dx.doi.org/10.1016/j.celrep.2020.108541
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author Covarrubias, Sergio
Cortez Vollmers, Apple
Capili, Allyson
Boettcher, Michael
Shulkin, Aaron
Correa, Michele Ramos
Halasz, Haley
Robinson, Elektra K.
O’Briain, Laura
Vollmers, Christopher
Blau, James
Katzman, Sol
McManus, Michael T.
Carpenter, Susan
author_facet Covarrubias, Sergio
Cortez Vollmers, Apple
Capili, Allyson
Boettcher, Michael
Shulkin, Aaron
Correa, Michele Ramos
Halasz, Haley
Robinson, Elektra K.
O’Briain, Laura
Vollmers, Christopher
Blau, James
Katzman, Sol
McManus, Michael T.
Carpenter, Susan
author_sort Covarrubias, Sergio
collection PubMed
description Macrophages are critical effector cells of the immune system, and understanding genes involved in their viability and function is essential for gaining insights into immune system dysregulation during disease. We use a high-throughput, pooled-based CRISPR-Cas screening approach to identify essential genes required for macrophage viability. In addition, we target 3′ UTRs to gain insights into previously unidentified cis-regulatory regions that control these essential genes. Next, using our recently generated nuclear factor κB (NF-κB) reporter line, we perform a fluorescence-activated cell sorting (FACS)-based high-throughput genetic screen and discover a number of previously unidentified positive and negative regulators of the NF-κB pathway. We unravel complexities of the TNF signaling cascade, showing that it can function in an autocrine manner in macrophages to negatively regulate the pathway. Utilizing a single complex library design, we are capable of interrogating various aspects of macrophage biology, thus generating a resource for future studies.
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spelling pubmed-79013562021-02-23 High-Throughput CRISPR Screening Identifies Genes Involved in Macrophage Viability and Inflammatory Pathways Covarrubias, Sergio Cortez Vollmers, Apple Capili, Allyson Boettcher, Michael Shulkin, Aaron Correa, Michele Ramos Halasz, Haley Robinson, Elektra K. O’Briain, Laura Vollmers, Christopher Blau, James Katzman, Sol McManus, Michael T. Carpenter, Susan Cell Rep Article Macrophages are critical effector cells of the immune system, and understanding genes involved in their viability and function is essential for gaining insights into immune system dysregulation during disease. We use a high-throughput, pooled-based CRISPR-Cas screening approach to identify essential genes required for macrophage viability. In addition, we target 3′ UTRs to gain insights into previously unidentified cis-regulatory regions that control these essential genes. Next, using our recently generated nuclear factor κB (NF-κB) reporter line, we perform a fluorescence-activated cell sorting (FACS)-based high-throughput genetic screen and discover a number of previously unidentified positive and negative regulators of the NF-κB pathway. We unravel complexities of the TNF signaling cascade, showing that it can function in an autocrine manner in macrophages to negatively regulate the pathway. Utilizing a single complex library design, we are capable of interrogating various aspects of macrophage biology, thus generating a resource for future studies. 2020-12-29 /pmc/articles/PMC7901356/ /pubmed/33378675 http://dx.doi.org/10.1016/j.celrep.2020.108541 Text en http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license.
spellingShingle Article
Covarrubias, Sergio
Cortez Vollmers, Apple
Capili, Allyson
Boettcher, Michael
Shulkin, Aaron
Correa, Michele Ramos
Halasz, Haley
Robinson, Elektra K.
O’Briain, Laura
Vollmers, Christopher
Blau, James
Katzman, Sol
McManus, Michael T.
Carpenter, Susan
High-Throughput CRISPR Screening Identifies Genes Involved in Macrophage Viability and Inflammatory Pathways
title High-Throughput CRISPR Screening Identifies Genes Involved in Macrophage Viability and Inflammatory Pathways
title_full High-Throughput CRISPR Screening Identifies Genes Involved in Macrophage Viability and Inflammatory Pathways
title_fullStr High-Throughput CRISPR Screening Identifies Genes Involved in Macrophage Viability and Inflammatory Pathways
title_full_unstemmed High-Throughput CRISPR Screening Identifies Genes Involved in Macrophage Viability and Inflammatory Pathways
title_short High-Throughput CRISPR Screening Identifies Genes Involved in Macrophage Viability and Inflammatory Pathways
title_sort high-throughput crispr screening identifies genes involved in macrophage viability and inflammatory pathways
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7901356/
https://www.ncbi.nlm.nih.gov/pubmed/33378675
http://dx.doi.org/10.1016/j.celrep.2020.108541
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