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Irregular particle morphology and membrane rupture facilitate ion gradients in the lumen of phagosomes

Localized fluxes, production, and/or degradation coupled to limited diffusion are well known to result in stable spatial concentration gradients of biomolecules in the cell. In this study, we demonstrate that this also holds true for small ions, since we found that the close membrane apposition betw...

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Autores principales: Baranov, Maksim V., Ioannidis, Melina, Balahsioui, Sami, Boersma, Auke, de Boer, Rinse, Kumar, Manoj, Niwa, Masato, Hirayama, Tasuku, Zhou, Qintian, Hopkins, Terrence M., Grijpstra, Pieter, Thutupalli, Shashi, Sacanna, Stefano, van den Bogaart, Geert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9680789/
https://www.ncbi.nlm.nih.gov/pubmed/36425330
http://dx.doi.org/10.1016/j.bpr.2022.100069
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author Baranov, Maksim V.
Ioannidis, Melina
Balahsioui, Sami
Boersma, Auke
de Boer, Rinse
Kumar, Manoj
Niwa, Masato
Hirayama, Tasuku
Zhou, Qintian
Hopkins, Terrence M.
Grijpstra, Pieter
Thutupalli, Shashi
Sacanna, Stefano
van den Bogaart, Geert
author_facet Baranov, Maksim V.
Ioannidis, Melina
Balahsioui, Sami
Boersma, Auke
de Boer, Rinse
Kumar, Manoj
Niwa, Masato
Hirayama, Tasuku
Zhou, Qintian
Hopkins, Terrence M.
Grijpstra, Pieter
Thutupalli, Shashi
Sacanna, Stefano
van den Bogaart, Geert
author_sort Baranov, Maksim V.
collection PubMed
description Localized fluxes, production, and/or degradation coupled to limited diffusion are well known to result in stable spatial concentration gradients of biomolecules in the cell. In this study, we demonstrate that this also holds true for small ions, since we found that the close membrane apposition between the membrane of a phagosome and the surface of the cargo particle it encloses, together with localized membrane rupture, suffice for stable gradients of protons and iron cations within the lumen of the phagosome. Our data show that, in phagosomes containing hexapod-shaped silica colloid particles, the phagosomal membrane is ruptured at the positions of the tips of the rods, but not at other positions. This results in the confined leakage at these positions of protons and iron from the lumen of the phagosome into the cytosol. In contrast, acidification and iron accumulation still occur at the positions of the phagosomes nearer to the cores of the particles. Our study strengthens the concept that coupling metabolic and signaling reaction cascades can be spatially confined by localized limited diffusion.
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spelling pubmed-96807892022-11-23 Irregular particle morphology and membrane rupture facilitate ion gradients in the lumen of phagosomes Baranov, Maksim V. Ioannidis, Melina Balahsioui, Sami Boersma, Auke de Boer, Rinse Kumar, Manoj Niwa, Masato Hirayama, Tasuku Zhou, Qintian Hopkins, Terrence M. Grijpstra, Pieter Thutupalli, Shashi Sacanna, Stefano van den Bogaart, Geert Biophys Rep (N Y) Article Localized fluxes, production, and/or degradation coupled to limited diffusion are well known to result in stable spatial concentration gradients of biomolecules in the cell. In this study, we demonstrate that this also holds true for small ions, since we found that the close membrane apposition between the membrane of a phagosome and the surface of the cargo particle it encloses, together with localized membrane rupture, suffice for stable gradients of protons and iron cations within the lumen of the phagosome. Our data show that, in phagosomes containing hexapod-shaped silica colloid particles, the phagosomal membrane is ruptured at the positions of the tips of the rods, but not at other positions. This results in the confined leakage at these positions of protons and iron from the lumen of the phagosome into the cytosol. In contrast, acidification and iron accumulation still occur at the positions of the phagosomes nearer to the cores of the particles. Our study strengthens the concept that coupling metabolic and signaling reaction cascades can be spatially confined by localized limited diffusion. Elsevier 2022-08-11 /pmc/articles/PMC9680789/ /pubmed/36425330 http://dx.doi.org/10.1016/j.bpr.2022.100069 Text en © 2022 The Author(s) 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 Article
Baranov, Maksim V.
Ioannidis, Melina
Balahsioui, Sami
Boersma, Auke
de Boer, Rinse
Kumar, Manoj
Niwa, Masato
Hirayama, Tasuku
Zhou, Qintian
Hopkins, Terrence M.
Grijpstra, Pieter
Thutupalli, Shashi
Sacanna, Stefano
van den Bogaart, Geert
Irregular particle morphology and membrane rupture facilitate ion gradients in the lumen of phagosomes
title Irregular particle morphology and membrane rupture facilitate ion gradients in the lumen of phagosomes
title_full Irregular particle morphology and membrane rupture facilitate ion gradients in the lumen of phagosomes
title_fullStr Irregular particle morphology and membrane rupture facilitate ion gradients in the lumen of phagosomes
title_full_unstemmed Irregular particle morphology and membrane rupture facilitate ion gradients in the lumen of phagosomes
title_short Irregular particle morphology and membrane rupture facilitate ion gradients in the lumen of phagosomes
title_sort irregular particle morphology and membrane rupture facilitate ion gradients in the lumen of phagosomes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9680789/
https://www.ncbi.nlm.nih.gov/pubmed/36425330
http://dx.doi.org/10.1016/j.bpr.2022.100069
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