Paige E. Allen, Robert C. Noland, Juan J. Martinez
{"title":"THP-1巨噬细胞中的康氏立克次体存活涉及宿主脂滴改变和活跃立克次体蛋白的产生","authors":"Paige E. Allen, Robert C. Noland, Juan J. Martinez","doi":"10.1111/cmi.13390","DOIUrl":null,"url":null,"abstract":"<div>\n \n \n <section>\n \n <p><i>Rickettsia conorii</i> is a Gram-negative, cytosolic intracellular bacterium that has classically been investigated in terms of endothelial cell infection. However, <i>R. conorii</i> and other human pathogenic <i>Rickettsia</i> species have evolved mechanisms to grow in various cell types, including macrophages, during mammalian infection. During infection of these phagocytes, <i>R. conorii</i> shifts the host cell's overall metabolism towards an anti-inflammatory M2 response, metabolically defined by an increase in host lipid metabolism and oxidative phosphorylation. Lipid metabolism has more recently been identified as a key regulator of host homeostasis through modulation of immune signalling and metabolism. Intracellular pathogens have adapted mechanisms of hijacking host metabolic pathways including host lipid catabolic pathways for various functions required for growth and survival. In the present study, we hypothesised that alterations of host lipid droplets initiated by lipid catabolic pathways during <i>R. conorii</i> infection is important for bacterial survival in macrophages. Herein, we determined that host lipid droplet modulation is initiated early during <i>R. conorii</i> infection, and these alterations rely on active bacteria and lipid catabolic pathways. We also find that these lipid catabolic pathways are essential for efficient bacterial survival. Unlike the mechanisms used by other intracellular pathogens, the catabolism of lipid droplets induced by <i>R. conorii</i> infection is independent of upstream host peroxisome proliferator-activated receptor-alpha (PPARα) signalling. Inhibition of PPARɣ signalling and lipid droplet accumulation in host cells cause a significant decrease in <i>R. conorii</i> survival suggesting a negative correlation with lipid droplet production and <i>R. conorii</i> survival. Together, these results strongly suggest that the modulation of lipid droplets in macrophage cells infected by <i>R. conorii</i> is an important and underappreciated aspect of the infection process.</p>\n </section>\n \n <section>\n \n <h3> Take Aways</h3>\n \n <div>\n <ul>\n \n <li>Host lipid droplets are differentially altered in early and replicative stages of THP-1 macrophage infection with <i>R. conorii</i>.</li>\n \n <li>Lipid droplet alterations are initiated in a bacterial-dependent manner and do not require host peroxisome proliferator-activated receptors α or ɣ activation.</li>\n \n <li>Pharmacological inhibition of host lipid catabolic processes during <i>R. conorii</i> infection indicates a requirement of lipid catabolism for bacterial survival and initiation of lipid droplet modulation.</li>\n \n <li>A significant increase in host lipid droplets during infection has a negative impact on <i>R. conorii</i> survival in THP-1 macrophages.</li>\n </ul>\n </div>\n </section>\n </div>","PeriodicalId":9844,"journal":{"name":"Cellular Microbiology","volume":"23 11","pages":""},"PeriodicalIF":2.6000,"publicationDate":"2021-08-31","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://sci-hub-pdf.com/10.1111/cmi.13390","citationCount":"5","resultStr":"{\"title\":\"Rickettsia conorii survival in THP-1 macrophages involves host lipid droplet alterations and active rickettsial protein production\",\"authors\":\"Paige E. Allen, Robert C. Noland, Juan J. Martinez\",\"doi\":\"10.1111/cmi.13390\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div>\\n \\n \\n <section>\\n \\n <p><i>Rickettsia conorii</i> is a Gram-negative, cytosolic intracellular bacterium that has classically been investigated in terms of endothelial cell infection. However, <i>R. conorii</i> and other human pathogenic <i>Rickettsia</i> species have evolved mechanisms to grow in various cell types, including macrophages, during mammalian infection. During infection of these phagocytes, <i>R. conorii</i> shifts the host cell's overall metabolism towards an anti-inflammatory M2 response, metabolically defined by an increase in host lipid metabolism and oxidative phosphorylation. Lipid metabolism has more recently been identified as a key regulator of host homeostasis through modulation of immune signalling and metabolism. Intracellular pathogens have adapted mechanisms of hijacking host metabolic pathways including host lipid catabolic pathways for various functions required for growth and survival. In the present study, we hypothesised that alterations of host lipid droplets initiated by lipid catabolic pathways during <i>R. conorii</i> infection is important for bacterial survival in macrophages. Herein, we determined that host lipid droplet modulation is initiated early during <i>R. conorii</i> infection, and these alterations rely on active bacteria and lipid catabolic pathways. We also find that these lipid catabolic pathways are essential for efficient bacterial survival. Unlike the mechanisms used by other intracellular pathogens, the catabolism of lipid droplets induced by <i>R. conorii</i> infection is independent of upstream host peroxisome proliferator-activated receptor-alpha (PPARα) signalling. Inhibition of PPARɣ signalling and lipid droplet accumulation in host cells cause a significant decrease in <i>R. conorii</i> survival suggesting a negative correlation with lipid droplet production and <i>R. conorii</i> survival. Together, these results strongly suggest that the modulation of lipid droplets in macrophage cells infected by <i>R. conorii</i> is an important and underappreciated aspect of the infection process.</p>\\n </section>\\n \\n <section>\\n \\n <h3> Take Aways</h3>\\n \\n <div>\\n <ul>\\n \\n <li>Host lipid droplets are differentially altered in early and replicative stages of THP-1 macrophage infection with <i>R. conorii</i>.</li>\\n \\n <li>Lipid droplet alterations are initiated in a bacterial-dependent manner and do not require host peroxisome proliferator-activated receptors α or ɣ activation.</li>\\n \\n <li>Pharmacological inhibition of host lipid catabolic processes during <i>R. conorii</i> infection indicates a requirement of lipid catabolism for bacterial survival and initiation of lipid droplet modulation.</li>\\n \\n <li>A significant increase in host lipid droplets during infection has a negative impact on <i>R. conorii</i> survival in THP-1 macrophages.</li>\\n </ul>\\n </div>\\n </section>\\n </div>\",\"PeriodicalId\":9844,\"journal\":{\"name\":\"Cellular Microbiology\",\"volume\":\"23 11\",\"pages\":\"\"},\"PeriodicalIF\":2.6000,\"publicationDate\":\"2021-08-31\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"https://sci-hub-pdf.com/10.1111/cmi.13390\",\"citationCount\":\"5\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Cellular Microbiology\",\"FirstCategoryId\":\"99\",\"ListUrlMain\":\"https://onlinelibrary.wiley.com/doi/10.1111/cmi.13390\",\"RegionNum\":2,\"RegionCategory\":\"生物学\",\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q3\",\"JCRName\":\"CELL BIOLOGY\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Cellular Microbiology","FirstCategoryId":"99","ListUrlMain":"https://onlinelibrary.wiley.com/doi/10.1111/cmi.13390","RegionNum":2,"RegionCategory":"生物学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"CELL BIOLOGY","Score":null,"Total":0}
Rickettsia conorii survival in THP-1 macrophages involves host lipid droplet alterations and active rickettsial protein production
Rickettsia conorii is a Gram-negative, cytosolic intracellular bacterium that has classically been investigated in terms of endothelial cell infection. However, R. conorii and other human pathogenic Rickettsia species have evolved mechanisms to grow in various cell types, including macrophages, during mammalian infection. During infection of these phagocytes, R. conorii shifts the host cell's overall metabolism towards an anti-inflammatory M2 response, metabolically defined by an increase in host lipid metabolism and oxidative phosphorylation. Lipid metabolism has more recently been identified as a key regulator of host homeostasis through modulation of immune signalling and metabolism. Intracellular pathogens have adapted mechanisms of hijacking host metabolic pathways including host lipid catabolic pathways for various functions required for growth and survival. In the present study, we hypothesised that alterations of host lipid droplets initiated by lipid catabolic pathways during R. conorii infection is important for bacterial survival in macrophages. Herein, we determined that host lipid droplet modulation is initiated early during R. conorii infection, and these alterations rely on active bacteria and lipid catabolic pathways. We also find that these lipid catabolic pathways are essential for efficient bacterial survival. Unlike the mechanisms used by other intracellular pathogens, the catabolism of lipid droplets induced by R. conorii infection is independent of upstream host peroxisome proliferator-activated receptor-alpha (PPARα) signalling. Inhibition of PPARɣ signalling and lipid droplet accumulation in host cells cause a significant decrease in R. conorii survival suggesting a negative correlation with lipid droplet production and R. conorii survival. Together, these results strongly suggest that the modulation of lipid droplets in macrophage cells infected by R. conorii is an important and underappreciated aspect of the infection process.
Take Aways
Host lipid droplets are differentially altered in early and replicative stages of THP-1 macrophage infection with R. conorii.
Lipid droplet alterations are initiated in a bacterial-dependent manner and do not require host peroxisome proliferator-activated receptors α or ɣ activation.
Pharmacological inhibition of host lipid catabolic processes during R. conorii infection indicates a requirement of lipid catabolism for bacterial survival and initiation of lipid droplet modulation.
A significant increase in host lipid droplets during infection has a negative impact on R. conorii survival in THP-1 macrophages.
期刊介绍:
Cellular Microbiology aims to publish outstanding contributions to the understanding of interactions between microbes, prokaryotes and eukaryotes, and their host in the context of pathogenic or mutualistic relationships, including co-infections and microbiota. We welcome studies on single cells, animals and plants, and encourage the use of model hosts and organoid cultures. Submission on cell and molecular biological aspects of microbes, such as their intracellular organization or the establishment and maintenance of their architecture in relation to virulence and pathogenicity are also encouraged. Contributions must provide mechanistic insights supported by quantitative data obtained through imaging, cellular, biochemical, structural or genetic approaches.