Cargando…

A terpene nucleoside from M. tuberculosis induces lysosomal lipid storage in foamy macrophages

Induction of lipid-laden foamy macrophages is a cellular hallmark of tuberculosis (TB) disease, which involves the transformation of infected phagolysosomes from a site of killing into a nutrient-rich replicative niche. Here, we show that a terpenyl nucleoside shed from Mycobacterium tuberculosis, 1...

Descripción completa

Detalles Bibliográficos
Autores principales: Bedard, Melissa, van der Niet, Sanne, Bernard, Elliott M., Babunovic, Gregory, Cheng, Tan-Yun, Aylan, Beren, Grootemaat, Anita E., Raman, Sahadevan, Botella, Laure, Ishikawa, Eri, O’Sullivan, Mary P., O’Leary, Seónadh, Mayfield, Jacob A., Buter, Jeffrey, Minnaard, Adriaan J., Fortune, Sarah M., Murphy, Leon O., Ory, Daniel S., Keane, Joseph, Yamasaki, Sho, Gutierrez, Maximiliano G., van der Wel, Nicole, Moody, D. Branch
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10014106/
https://www.ncbi.nlm.nih.gov/pubmed/36757797
http://dx.doi.org/10.1172/JCI161944
_version_ 1784906926936555520
author Bedard, Melissa
van der Niet, Sanne
Bernard, Elliott M.
Babunovic, Gregory
Cheng, Tan-Yun
Aylan, Beren
Grootemaat, Anita E.
Raman, Sahadevan
Botella, Laure
Ishikawa, Eri
O’Sullivan, Mary P.
O’Leary, Seónadh
Mayfield, Jacob A.
Buter, Jeffrey
Minnaard, Adriaan J.
Fortune, Sarah M.
Murphy, Leon O.
Ory, Daniel S.
Keane, Joseph
Yamasaki, Sho
Gutierrez, Maximiliano G.
van der Wel, Nicole
Moody, D. Branch
author_facet Bedard, Melissa
van der Niet, Sanne
Bernard, Elliott M.
Babunovic, Gregory
Cheng, Tan-Yun
Aylan, Beren
Grootemaat, Anita E.
Raman, Sahadevan
Botella, Laure
Ishikawa, Eri
O’Sullivan, Mary P.
O’Leary, Seónadh
Mayfield, Jacob A.
Buter, Jeffrey
Minnaard, Adriaan J.
Fortune, Sarah M.
Murphy, Leon O.
Ory, Daniel S.
Keane, Joseph
Yamasaki, Sho
Gutierrez, Maximiliano G.
van der Wel, Nicole
Moody, D. Branch
author_sort Bedard, Melissa
collection PubMed
description Induction of lipid-laden foamy macrophages is a cellular hallmark of tuberculosis (TB) disease, which involves the transformation of infected phagolysosomes from a site of killing into a nutrient-rich replicative niche. Here, we show that a terpenyl nucleoside shed from Mycobacterium tuberculosis, 1-tuberculosinyladenosine (1-TbAd), caused lysosomal maturation arrest and autophagy blockade, leading to lipid storage in M1 macrophages. Pure 1-TbAd, or infection with terpenyl nucleoside–producing M. tuberculosis, caused intralysosomal and peribacillary lipid storage patterns that matched both the molecules and subcellular locations known in foamy macrophages. Lipidomics showed that 1-TbAd induced storage of triacylglycerides and cholesterylesters and that 1-TbAd increased M. tuberculosis growth under conditions of restricted lipid access in macrophages. Furthermore, lipidomics identified 1-TbAd–induced lipid substrates that define Gaucher’s disease, Wolman’s disease, and other inborn lysosomal storage diseases. These data identify genetic and molecular causes of M. tuberculosis–induced lysosomal failure, leading to successful testing of an agonist of TRPML1 calcium channels that reverses lipid storage in cells. These data establish the host-directed cellular functions of an orphan effector molecule that promotes survival in macrophages, providing both an upstream cause and detailed picture of lysosome failure in foamy macrophages.
format Online
Article
Text
id pubmed-10014106
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Society for Clinical Investigation
record_format MEDLINE/PubMed
spelling pubmed-100141062023-03-15 A terpene nucleoside from M. tuberculosis induces lysosomal lipid storage in foamy macrophages Bedard, Melissa van der Niet, Sanne Bernard, Elliott M. Babunovic, Gregory Cheng, Tan-Yun Aylan, Beren Grootemaat, Anita E. Raman, Sahadevan Botella, Laure Ishikawa, Eri O’Sullivan, Mary P. O’Leary, Seónadh Mayfield, Jacob A. Buter, Jeffrey Minnaard, Adriaan J. Fortune, Sarah M. Murphy, Leon O. Ory, Daniel S. Keane, Joseph Yamasaki, Sho Gutierrez, Maximiliano G. van der Wel, Nicole Moody, D. Branch J Clin Invest Research Article Induction of lipid-laden foamy macrophages is a cellular hallmark of tuberculosis (TB) disease, which involves the transformation of infected phagolysosomes from a site of killing into a nutrient-rich replicative niche. Here, we show that a terpenyl nucleoside shed from Mycobacterium tuberculosis, 1-tuberculosinyladenosine (1-TbAd), caused lysosomal maturation arrest and autophagy blockade, leading to lipid storage in M1 macrophages. Pure 1-TbAd, or infection with terpenyl nucleoside–producing M. tuberculosis, caused intralysosomal and peribacillary lipid storage patterns that matched both the molecules and subcellular locations known in foamy macrophages. Lipidomics showed that 1-TbAd induced storage of triacylglycerides and cholesterylesters and that 1-TbAd increased M. tuberculosis growth under conditions of restricted lipid access in macrophages. Furthermore, lipidomics identified 1-TbAd–induced lipid substrates that define Gaucher’s disease, Wolman’s disease, and other inborn lysosomal storage diseases. These data identify genetic and molecular causes of M. tuberculosis–induced lysosomal failure, leading to successful testing of an agonist of TRPML1 calcium channels that reverses lipid storage in cells. These data establish the host-directed cellular functions of an orphan effector molecule that promotes survival in macrophages, providing both an upstream cause and detailed picture of lysosome failure in foamy macrophages. American Society for Clinical Investigation 2023-03-15 /pmc/articles/PMC10014106/ /pubmed/36757797 http://dx.doi.org/10.1172/JCI161944 Text en © 2023 Bedard et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Bedard, Melissa
van der Niet, Sanne
Bernard, Elliott M.
Babunovic, Gregory
Cheng, Tan-Yun
Aylan, Beren
Grootemaat, Anita E.
Raman, Sahadevan
Botella, Laure
Ishikawa, Eri
O’Sullivan, Mary P.
O’Leary, Seónadh
Mayfield, Jacob A.
Buter, Jeffrey
Minnaard, Adriaan J.
Fortune, Sarah M.
Murphy, Leon O.
Ory, Daniel S.
Keane, Joseph
Yamasaki, Sho
Gutierrez, Maximiliano G.
van der Wel, Nicole
Moody, D. Branch
A terpene nucleoside from M. tuberculosis induces lysosomal lipid storage in foamy macrophages
title A terpene nucleoside from M. tuberculosis induces lysosomal lipid storage in foamy macrophages
title_full A terpene nucleoside from M. tuberculosis induces lysosomal lipid storage in foamy macrophages
title_fullStr A terpene nucleoside from M. tuberculosis induces lysosomal lipid storage in foamy macrophages
title_full_unstemmed A terpene nucleoside from M. tuberculosis induces lysosomal lipid storage in foamy macrophages
title_short A terpene nucleoside from M. tuberculosis induces lysosomal lipid storage in foamy macrophages
title_sort terpene nucleoside from m. tuberculosis induces lysosomal lipid storage in foamy macrophages
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10014106/
https://www.ncbi.nlm.nih.gov/pubmed/36757797
http://dx.doi.org/10.1172/JCI161944
work_keys_str_mv AT bedardmelissa aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT vandernietsanne aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT bernardelliottm aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT babunovicgregory aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT chengtanyun aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT aylanberen aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT grootemaatanitae aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT ramansahadevan aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT botellalaure aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT ishikawaeri aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT osullivanmaryp aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT olearyseonadh aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT mayfieldjacoba aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT buterjeffrey aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT minnaardadriaanj aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT fortunesarahm aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT murphyleono aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT orydaniels aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT keanejoseph aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT yamasakisho aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT gutierrezmaximilianog aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT vanderwelnicole aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT moodydbranch aterpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT bedardmelissa terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT vandernietsanne terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT bernardelliottm terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT babunovicgregory terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT chengtanyun terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT aylanberen terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT grootemaatanitae terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT ramansahadevan terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT botellalaure terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT ishikawaeri terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT osullivanmaryp terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT olearyseonadh terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT mayfieldjacoba terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT buterjeffrey terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT minnaardadriaanj terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT fortunesarahm terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT murphyleono terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT orydaniels terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT keanejoseph terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT yamasakisho terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT gutierrezmaximilianog terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT vanderwelnicole terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages
AT moodydbranch terpenenucleosidefrommtuberculosisinduceslysosomallipidstorageinfoamymacrophages