Cargando…
Lipid A Has Significance for Optimal Growth of Coxiella burnetii in Macrophage-Like THP-1 Cells and to a Lesser Extent in Axenic Media and Non-phagocytic Cells
Lipid A is an essential basal component of lipopolysaccharide of most Gram-negative bacteria. Inhibitors targeting LpxC, a conserved enzyme in lipid A biosynthesis, are antibiotic candidates against Gram-negative pathogens. Here we report the characterization of the role of lipid A in Coxiella burne...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6002510/ https://www.ncbi.nlm.nih.gov/pubmed/29938202 http://dx.doi.org/10.3389/fcimb.2018.00192 |
_version_ | 1783332222417240064 |
---|---|
author | Wang, Tao Yu, Yonghui Liang, Xiaofei Luo, Shengdong He, Zemin Sun, Zhihui Jiang, Yongqiang Omsland, Anders Zhou, Pei Song, Lihua |
author_facet | Wang, Tao Yu, Yonghui Liang, Xiaofei Luo, Shengdong He, Zemin Sun, Zhihui Jiang, Yongqiang Omsland, Anders Zhou, Pei Song, Lihua |
author_sort | Wang, Tao |
collection | PubMed |
description | Lipid A is an essential basal component of lipopolysaccharide of most Gram-negative bacteria. Inhibitors targeting LpxC, a conserved enzyme in lipid A biosynthesis, are antibiotic candidates against Gram-negative pathogens. Here we report the characterization of the role of lipid A in Coxiella burnetii growth in axenic media, monkey kidney cells (BGMK and Vero), and macrophage-like THP-1 cells by using a potent LpxC inhibitor -LPC-011. We first determined the susceptibility of C. burnetii LpxC to LPC-011 in a surrogate E. coli model. In E. coli, the minimum inhibitory concentration (MIC) of LPC-011 against C. burnetii LpxC is < 0.05 μg/mL, a value lower than the inhibitor's MIC against E. coli LpxC. Considering the inhibitor's problematic pharmacokinetic properties in vivo and Coxiella's culturing time up to 7 days, the stability of LPC-011 in cell cultures was assessed. We found that regularly changing inhibitor-containing media was required for sustained inhibition of C. burnetii LpxC in cells. Under inhibitor treatment, Coxiella has reduced growth yields in axenic media and during replication in non-phagocytic cells, and has a reduced number of productive vacuoles in such cells. Inhibiting lipid A biosynthesis in C. burnetii by the inhibitor was shown in a phase II strain transformed with chlamydial kdtA. This exogenous KdtA enzyme modifies Coxiella lipid A with an α-Kdo-(2 → 8)-α-Kdo epitope that can be detected by anti-chlamydia genus antibodies. In inhibitor-treated THP-1 cells, Coxiella shows severe growth defects characterized by poor vacuole formation and low growth yields. Coxiella progenies prepared from inhibitor-treated cells retain the capability of normally infecting all tested cells in the absence of the inhibitor, which suggests a dispensable role of lipid A for infection and early vacuole development. In conclusion, our data suggest that lipid A has significance for optimal development of Coxiella-containing vacuoles, and for robust multiplication of C. burnetii in macrophage-like THP-1 cells. Unlike many bacteria, C. burnetii replication in axenic media and non-phagocytic cells was less dependent on normal lipid A biosynthesis. |
format | Online Article Text |
id | pubmed-6002510 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-60025102018-06-22 Lipid A Has Significance for Optimal Growth of Coxiella burnetii in Macrophage-Like THP-1 Cells and to a Lesser Extent in Axenic Media and Non-phagocytic Cells Wang, Tao Yu, Yonghui Liang, Xiaofei Luo, Shengdong He, Zemin Sun, Zhihui Jiang, Yongqiang Omsland, Anders Zhou, Pei Song, Lihua Front Cell Infect Microbiol Microbiology Lipid A is an essential basal component of lipopolysaccharide of most Gram-negative bacteria. Inhibitors targeting LpxC, a conserved enzyme in lipid A biosynthesis, are antibiotic candidates against Gram-negative pathogens. Here we report the characterization of the role of lipid A in Coxiella burnetii growth in axenic media, monkey kidney cells (BGMK and Vero), and macrophage-like THP-1 cells by using a potent LpxC inhibitor -LPC-011. We first determined the susceptibility of C. burnetii LpxC to LPC-011 in a surrogate E. coli model. In E. coli, the minimum inhibitory concentration (MIC) of LPC-011 against C. burnetii LpxC is < 0.05 μg/mL, a value lower than the inhibitor's MIC against E. coli LpxC. Considering the inhibitor's problematic pharmacokinetic properties in vivo and Coxiella's culturing time up to 7 days, the stability of LPC-011 in cell cultures was assessed. We found that regularly changing inhibitor-containing media was required for sustained inhibition of C. burnetii LpxC in cells. Under inhibitor treatment, Coxiella has reduced growth yields in axenic media and during replication in non-phagocytic cells, and has a reduced number of productive vacuoles in such cells. Inhibiting lipid A biosynthesis in C. burnetii by the inhibitor was shown in a phase II strain transformed with chlamydial kdtA. This exogenous KdtA enzyme modifies Coxiella lipid A with an α-Kdo-(2 → 8)-α-Kdo epitope that can be detected by anti-chlamydia genus antibodies. In inhibitor-treated THP-1 cells, Coxiella shows severe growth defects characterized by poor vacuole formation and low growth yields. Coxiella progenies prepared from inhibitor-treated cells retain the capability of normally infecting all tested cells in the absence of the inhibitor, which suggests a dispensable role of lipid A for infection and early vacuole development. In conclusion, our data suggest that lipid A has significance for optimal development of Coxiella-containing vacuoles, and for robust multiplication of C. burnetii in macrophage-like THP-1 cells. Unlike many bacteria, C. burnetii replication in axenic media and non-phagocytic cells was less dependent on normal lipid A biosynthesis. Frontiers Media S.A. 2018-06-08 /pmc/articles/PMC6002510/ /pubmed/29938202 http://dx.doi.org/10.3389/fcimb.2018.00192 Text en Copyright © 2018 Wang, Yu, Liang, Luo, He, Sun, Jiang, Omsland, Zhou and Song. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Microbiology Wang, Tao Yu, Yonghui Liang, Xiaofei Luo, Shengdong He, Zemin Sun, Zhihui Jiang, Yongqiang Omsland, Anders Zhou, Pei Song, Lihua Lipid A Has Significance for Optimal Growth of Coxiella burnetii in Macrophage-Like THP-1 Cells and to a Lesser Extent in Axenic Media and Non-phagocytic Cells |
title | Lipid A Has Significance for Optimal Growth of Coxiella burnetii in Macrophage-Like THP-1 Cells and to a Lesser Extent in Axenic Media and Non-phagocytic Cells |
title_full | Lipid A Has Significance for Optimal Growth of Coxiella burnetii in Macrophage-Like THP-1 Cells and to a Lesser Extent in Axenic Media and Non-phagocytic Cells |
title_fullStr | Lipid A Has Significance for Optimal Growth of Coxiella burnetii in Macrophage-Like THP-1 Cells and to a Lesser Extent in Axenic Media and Non-phagocytic Cells |
title_full_unstemmed | Lipid A Has Significance for Optimal Growth of Coxiella burnetii in Macrophage-Like THP-1 Cells and to a Lesser Extent in Axenic Media and Non-phagocytic Cells |
title_short | Lipid A Has Significance for Optimal Growth of Coxiella burnetii in Macrophage-Like THP-1 Cells and to a Lesser Extent in Axenic Media and Non-phagocytic Cells |
title_sort | lipid a has significance for optimal growth of coxiella burnetii in macrophage-like thp-1 cells and to a lesser extent in axenic media and non-phagocytic cells |
topic | Microbiology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6002510/ https://www.ncbi.nlm.nih.gov/pubmed/29938202 http://dx.doi.org/10.3389/fcimb.2018.00192 |
work_keys_str_mv | AT wangtao lipidahassignificanceforoptimalgrowthofcoxiellaburnetiiinmacrophagelikethp1cellsandtoalesserextentinaxenicmediaandnonphagocyticcells AT yuyonghui lipidahassignificanceforoptimalgrowthofcoxiellaburnetiiinmacrophagelikethp1cellsandtoalesserextentinaxenicmediaandnonphagocyticcells AT liangxiaofei lipidahassignificanceforoptimalgrowthofcoxiellaburnetiiinmacrophagelikethp1cellsandtoalesserextentinaxenicmediaandnonphagocyticcells AT luoshengdong lipidahassignificanceforoptimalgrowthofcoxiellaburnetiiinmacrophagelikethp1cellsandtoalesserextentinaxenicmediaandnonphagocyticcells AT hezemin lipidahassignificanceforoptimalgrowthofcoxiellaburnetiiinmacrophagelikethp1cellsandtoalesserextentinaxenicmediaandnonphagocyticcells AT sunzhihui lipidahassignificanceforoptimalgrowthofcoxiellaburnetiiinmacrophagelikethp1cellsandtoalesserextentinaxenicmediaandnonphagocyticcells AT jiangyongqiang lipidahassignificanceforoptimalgrowthofcoxiellaburnetiiinmacrophagelikethp1cellsandtoalesserextentinaxenicmediaandnonphagocyticcells AT omslandanders lipidahassignificanceforoptimalgrowthofcoxiellaburnetiiinmacrophagelikethp1cellsandtoalesserextentinaxenicmediaandnonphagocyticcells AT zhoupei lipidahassignificanceforoptimalgrowthofcoxiellaburnetiiinmacrophagelikethp1cellsandtoalesserextentinaxenicmediaandnonphagocyticcells AT songlihua lipidahassignificanceforoptimalgrowthofcoxiellaburnetiiinmacrophagelikethp1cellsandtoalesserextentinaxenicmediaandnonphagocyticcells |