Host immunity increases Mycobacterium tuberculosis reliance on cytochrome bd oxidase.

In order to sustain a persistent infection, Mycobacterium tuberculosis (Mtb) must adapt to a changing environment that is shaped by the developing immune response. This necessity to adapt is evident in the flexibility of many aspects of Mtb metabolism, including a respiratory chain that consists of...

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Main Authors: Yi Cai, Eleni Jaecklein, Jared S Mackenzie, Kadamba Papavinasasundaram, Andrew J Olive, Xinchun Chen, Adrie J C Steyn, Christopher M Sassetti
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2021-07-01
Series:PLoS Pathogens
Online Access:https://doi.org/10.1371/journal.ppat.1008911
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spelling doaj-78c80d612a13471299af88d25e1f27032021-08-13T04:30:49ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742021-07-01177e100891110.1371/journal.ppat.1008911Host immunity increases Mycobacterium tuberculosis reliance on cytochrome bd oxidase.Yi CaiEleni JaeckleinJared S MackenzieKadamba PapavinasasundaramAndrew J OliveXinchun ChenAdrie J C SteynChristopher M SassettiIn order to sustain a persistent infection, Mycobacterium tuberculosis (Mtb) must adapt to a changing environment that is shaped by the developing immune response. This necessity to adapt is evident in the flexibility of many aspects of Mtb metabolism, including a respiratory chain that consists of two distinct terminal cytochrome oxidase complexes. Under the conditions tested thus far, the bc1/aa3 complex appears to play a dominant role, while the alternative bd oxidase is largely redundant. However, the presence of two terminal oxidases in this obligate pathogen implies that respiratory requirements might change during infection. We report that the cytochrome bd oxidase is specifically required for resisting the adaptive immune response. While the bd oxidase was dispensable for growth in resting macrophages and the establishment of infection in mice, this complex was necessary for optimal fitness after the initiation of adaptive immunity. This requirement was dependent on lymphocyte-derived interferon gamma (IFNγ), but did not involve nitrogen and oxygen radicals that are known to inhibit respiration in other contexts. Instead, we found that ΔcydA mutants were hypersusceptible to the low pH encountered in IFNγ-activated macrophages. Unlike wild type Mtb, cytochrome bd-deficient bacteria were unable to sustain a maximal oxygen consumption rate (OCR) at low pH, indicating that the remaining cytochrome bc1/aa3 complex is preferentially inhibited under acidic conditions. Consistent with this model, the potency of the cytochrome bc1/aa3 inhibitor, Q203, is dramatically enhanced at low pH. This work identifies a critical interaction between host immunity and pathogen respiration that influences both the progression of the infection and the efficacy of potential new TB drugs.https://doi.org/10.1371/journal.ppat.1008911
collection DOAJ
language English
format Article
sources DOAJ
author Yi Cai
Eleni Jaecklein
Jared S Mackenzie
Kadamba Papavinasasundaram
Andrew J Olive
Xinchun Chen
Adrie J C Steyn
Christopher M Sassetti
spellingShingle Yi Cai
Eleni Jaecklein
Jared S Mackenzie
Kadamba Papavinasasundaram
Andrew J Olive
Xinchun Chen
Adrie J C Steyn
Christopher M Sassetti
Host immunity increases Mycobacterium tuberculosis reliance on cytochrome bd oxidase.
PLoS Pathogens
author_facet Yi Cai
Eleni Jaecklein
Jared S Mackenzie
Kadamba Papavinasasundaram
Andrew J Olive
Xinchun Chen
Adrie J C Steyn
Christopher M Sassetti
author_sort Yi Cai
title Host immunity increases Mycobacterium tuberculosis reliance on cytochrome bd oxidase.
title_short Host immunity increases Mycobacterium tuberculosis reliance on cytochrome bd oxidase.
title_full Host immunity increases Mycobacterium tuberculosis reliance on cytochrome bd oxidase.
title_fullStr Host immunity increases Mycobacterium tuberculosis reliance on cytochrome bd oxidase.
title_full_unstemmed Host immunity increases Mycobacterium tuberculosis reliance on cytochrome bd oxidase.
title_sort host immunity increases mycobacterium tuberculosis reliance on cytochrome bd oxidase.
publisher Public Library of Science (PLoS)
series PLoS Pathogens
issn 1553-7366
1553-7374
publishDate 2021-07-01
description In order to sustain a persistent infection, Mycobacterium tuberculosis (Mtb) must adapt to a changing environment that is shaped by the developing immune response. This necessity to adapt is evident in the flexibility of many aspects of Mtb metabolism, including a respiratory chain that consists of two distinct terminal cytochrome oxidase complexes. Under the conditions tested thus far, the bc1/aa3 complex appears to play a dominant role, while the alternative bd oxidase is largely redundant. However, the presence of two terminal oxidases in this obligate pathogen implies that respiratory requirements might change during infection. We report that the cytochrome bd oxidase is specifically required for resisting the adaptive immune response. While the bd oxidase was dispensable for growth in resting macrophages and the establishment of infection in mice, this complex was necessary for optimal fitness after the initiation of adaptive immunity. This requirement was dependent on lymphocyte-derived interferon gamma (IFNγ), but did not involve nitrogen and oxygen radicals that are known to inhibit respiration in other contexts. Instead, we found that ΔcydA mutants were hypersusceptible to the low pH encountered in IFNγ-activated macrophages. Unlike wild type Mtb, cytochrome bd-deficient bacteria were unable to sustain a maximal oxygen consumption rate (OCR) at low pH, indicating that the remaining cytochrome bc1/aa3 complex is preferentially inhibited under acidic conditions. Consistent with this model, the potency of the cytochrome bc1/aa3 inhibitor, Q203, is dramatically enhanced at low pH. This work identifies a critical interaction between host immunity and pathogen respiration that influences both the progression of the infection and the efficacy of potential new TB drugs.
url https://doi.org/10.1371/journal.ppat.1008911
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