Clinical strains of Mycobacterium tuberculosis exhibit differential lipid metabolism-associated transcriptome changes in in vitro cholesterol and infection models

被引:4
作者
Moopanar, Kynesha [1 ]
Nyide, Asanda Nomfundo Graduate [1 ]
Senzani, Sibusiso [2 ]
Mvubu, Nontobeko Eunice [1 ]
机构
[1] Univ KwaZulu Natal, Coll Agr Engn & Sci, Sch Life Sci, Microbiol, Westville Campus,Private Bag X54001, ZA-4000 Durban, South Africa
[2] Univ KwaZulu Natal, Doris Duke Med Res Inst, Coll Hlth Sci, Sch Lab Med & Med Sci, 1st Floor,Private Bag 7, ZA-4013 Durban, South Africa
基金
新加坡国家研究基金会; 芬兰科学院;
关键词
Mycobacterium tuberculosis; lipid metabolism; clinical strains; cholesterol; transcriptome; ACYL-COA CARBOXYLASE; MYCOLIC ACID BIOSYNTHESIS; SULFOLIPID-1; BIOSYNTHESIS; TREHALOSE BIOSYNTHESIS; RESISTANT TUBERCULOSIS; GENETIC-VARIABILITY; LATENT TUBERCULOSIS; BEIJING GENOTYPE; FATTY-ACIDS; GROWTH;
D O I
10.1093/femspd/ftac046
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Clinical strains of Mycobacterium tuberculosis differentially metabolise cholesterol in in vitro models. Many studies have identified host-derived lipids, characterised by the abundance of cholesterol, as a major source of carbon nutrition for Mycobacterium tuberculosis during infection. Members of the Mycobacterium tuberculosis complex are biologically different with regards to degree of disease, host range, pathogenicity and transmission. Therefore, the current study aimed at elucidating transcriptome changes during early infection of pulmonary epithelial cells and on an in vitro cholesterol-rich minimal media, in M. tuberculosis clinical strains F15/LAM4/KZN and Beijing, and the laboratory H37Rv strain. Infection of pulmonary epithelial cells elicited the upregulation of fadD28 and hsaC in both the F15/LAM4/KZN and Beijing strains and the downregulation of several other lipid-associated genes. Growth curve analysis revealed F15/LAM4/KZN and Beijing to be slow growers in 7H9 medium and cholesterol-supplemented media. RNA-seq analysis revealed strain-specific transcriptomic changes, thereby affecting different metabolic processes in an in vitro cholesterol model. The differential expression of these genes suggests that the genetically diverse M. tuberculosis clinical strains exhibit strain-specific behaviour that may influence their ability to metabolise lipids, specifically cholesterol, which may account for phenotypic differences observed during infection.
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页数:16
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