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The sodium proton exchanger NHE9 regulates phagosome maturation and bactericidal activity in macrophages

Acidification of phagosomes is essential for the bactericidal activity of macrophages. Targeting machinery that regulates pH within the phagosomes is a prominent strategy employed by various pathogens that have emerged as major threats to public health. Nascent phagosomes acquire the machinery for p...

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Autores principales: Shamroukh, Habiba S., Lone, Nabrah, Akhtar, Muaaz, Altayib, Alhareth, Sutliff, Shelby, Kassem, Zahraa, Tripathy, Suvranta K., Kondapalli, Kalyan C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9293770/
https://www.ncbi.nlm.nih.gov/pubmed/35716776
http://dx.doi.org/10.1016/j.jbc.2022.102150
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author Shamroukh, Habiba S.
Lone, Nabrah
Akhtar, Muaaz
Altayib, Alhareth
Sutliff, Shelby
Kassem, Zahraa
Tripathy, Suvranta K.
Kondapalli, Kalyan C.
author_facet Shamroukh, Habiba S.
Lone, Nabrah
Akhtar, Muaaz
Altayib, Alhareth
Sutliff, Shelby
Kassem, Zahraa
Tripathy, Suvranta K.
Kondapalli, Kalyan C.
author_sort Shamroukh, Habiba S.
collection PubMed
description Acidification of phagosomes is essential for the bactericidal activity of macrophages. Targeting machinery that regulates pH within the phagosomes is a prominent strategy employed by various pathogens that have emerged as major threats to public health. Nascent phagosomes acquire the machinery for pH regulation through a graded maturation process involving fusion with endolysosomes. Meticulous coordination between proton pumping and leakage mechanisms is crucial for maintaining optimal pH within the phagosome. However, relative to mechanisms involved in acidifying the phagosome lumen, little is known about proton leakage pathways in this organelle. Sodium proton transporter NHE9 is a known proton leakage pathway located on the endosomes. As phagosomes acquire proteins through fusions with endosomes during maturation, NHE9 seemed a promising candidate for regulating proton fluxes on the phagosome. Here, using genetic and biophysical approaches, we show NHE9 is an important proton leakage pathway associated with the maturing phagosome. NHE9 is highly expressed in immune cells, specifically macrophages; however, NHE9 expression is strongly downregulated upon bacterial infection. We show that compensatory ectopic NHE9 expression hinders the directed motion of phagosomes along microtubules and promotes early detachment from the microtubule tracks. As a result, these phagosomes have shorter run lengths and are not successful in reaching the lysosome. In accordance with this observation, we demonstrate that NHE9 expression levels negatively correlate with bacterial survival. Together, our findings show that NHE9 regulates lumenal pH to affect phagosome maturation, and consequently, microbicidal activity in macrophages.
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spelling pubmed-92937702022-07-20 The sodium proton exchanger NHE9 regulates phagosome maturation and bactericidal activity in macrophages Shamroukh, Habiba S. Lone, Nabrah Akhtar, Muaaz Altayib, Alhareth Sutliff, Shelby Kassem, Zahraa Tripathy, Suvranta K. Kondapalli, Kalyan C. J Biol Chem Research Article Acidification of phagosomes is essential for the bactericidal activity of macrophages. Targeting machinery that regulates pH within the phagosomes is a prominent strategy employed by various pathogens that have emerged as major threats to public health. Nascent phagosomes acquire the machinery for pH regulation through a graded maturation process involving fusion with endolysosomes. Meticulous coordination between proton pumping and leakage mechanisms is crucial for maintaining optimal pH within the phagosome. However, relative to mechanisms involved in acidifying the phagosome lumen, little is known about proton leakage pathways in this organelle. Sodium proton transporter NHE9 is a known proton leakage pathway located on the endosomes. As phagosomes acquire proteins through fusions with endosomes during maturation, NHE9 seemed a promising candidate for regulating proton fluxes on the phagosome. Here, using genetic and biophysical approaches, we show NHE9 is an important proton leakage pathway associated with the maturing phagosome. NHE9 is highly expressed in immune cells, specifically macrophages; however, NHE9 expression is strongly downregulated upon bacterial infection. We show that compensatory ectopic NHE9 expression hinders the directed motion of phagosomes along microtubules and promotes early detachment from the microtubule tracks. As a result, these phagosomes have shorter run lengths and are not successful in reaching the lysosome. In accordance with this observation, we demonstrate that NHE9 expression levels negatively correlate with bacterial survival. Together, our findings show that NHE9 regulates lumenal pH to affect phagosome maturation, and consequently, microbicidal activity in macrophages. American Society for Biochemistry and Molecular Biology 2022-06-16 /pmc/articles/PMC9293770/ /pubmed/35716776 http://dx.doi.org/10.1016/j.jbc.2022.102150 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Shamroukh, Habiba S.
Lone, Nabrah
Akhtar, Muaaz
Altayib, Alhareth
Sutliff, Shelby
Kassem, Zahraa
Tripathy, Suvranta K.
Kondapalli, Kalyan C.
The sodium proton exchanger NHE9 regulates phagosome maturation and bactericidal activity in macrophages
title The sodium proton exchanger NHE9 regulates phagosome maturation and bactericidal activity in macrophages
title_full The sodium proton exchanger NHE9 regulates phagosome maturation and bactericidal activity in macrophages
title_fullStr The sodium proton exchanger NHE9 regulates phagosome maturation and bactericidal activity in macrophages
title_full_unstemmed The sodium proton exchanger NHE9 regulates phagosome maturation and bactericidal activity in macrophages
title_short The sodium proton exchanger NHE9 regulates phagosome maturation and bactericidal activity in macrophages
title_sort sodium proton exchanger nhe9 regulates phagosome maturation and bactericidal activity in macrophages
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9293770/
https://www.ncbi.nlm.nih.gov/pubmed/35716776
http://dx.doi.org/10.1016/j.jbc.2022.102150
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