Replication of Coxiella burnetii in a Lysosome-Like Vacuole Does Not Require Lysosomal Hydrolases

被引:10
作者
Miller, Heather E. [1 ]
Hoyt, Forrest H. [2 ]
Heinzen, Robert A. [1 ]
机构
[1] NIAID, Coxiella Pathogenesis Sect, Lab Bacteriol, Rocky Mt Labs,NIH, Hamilton, MT 59840 USA
[2] NIAID, Electron Microscopy Unit, Res Technol Branch, Rocky Mt Labs,NIH, Hamilton, MT USA
基金
美国国家卫生研究院;
关键词
Coxiella; Coxiella-containing vacuole; GNPTAB knockout cells; LC3; Q fever; autophagy; hydrolases; lysosome; mannose-6-phosphate receptor; vesicular trafficking; GENETIC-TRANSFORMATION; DEPENDENT REGULATION; LAMP PROTEINS; CATHEPSIN-D; MATURATION; COMPARTMENTS; GENERATION; PATHWAYS; FUSION; LC3;
D O I
10.1128/IAI.00493-19
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Coxiella burnetii is an intracellular bacterium that causes query, or Q fever, a disease that typically manifests as a severe flu-like illness. The initial target of C. burnetii is the alveolar macrophage. Here, it regulates vesicle trafficking pathways and fusion events to establish a large replication vacuole called the Coxiella-containing vacuole (CCV). Similar to a phagolysosome, the CCV has an acidic pH and contains lysosomal hydrolases obtained via fusion with late endocytic vesicles. Lysosomal hydrolases break down various lipids, carbohydrates, and proteins; thus, it is assumed C. burnetii derives nutrients for growth from these degradation products. To investigate this possibility, we utilized a GNPTAB(-/-) HeLa cell line that lacks lysosomal hydrolases in endocytic compartments. Unexpectedly, examination of C. burnetii growth in GNPTAB(-/-) HeLa cells revealed replication and viability are not impaired, indicating C. burnetii does not require by-products of hydrolase degradation to survive and grow in the CCV. However, although bacterial growth was normal, CCVs were abnormal, appearing dark and condensed rather than clear and spacious. Lack of degradation within CCVs allowed waste products to accumulate, including intraluminal vesicles, autophagy protein LC3, and cholesterol. The build-up of waste products coincided with an altered CCV membrane, where LAMP1 was decreased and CD63 and LAMP1 redistributed from a punctate to uniform localization. This disruption of CCV membrane organization may account for the decreased CCV size due to impaired fusion with late endocytic vesicles. Collectively, these results demonstrate lysosomal hydrolases are not required for C. burnetii survival and growth but are needed for normal CCV development. These data provide insight into mechanisms of CCV biogenesis while raising the important question of how C. burnetii obtains essential nutrients from its host.
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页数:13
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