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Metabolic switching and cell wall remodelling of Mycobacterium tuberculosis during bone tuberculosis

毒力 结核分枝杆菌 转录组 生物 成骨细胞 肺结核 发病机制 微阵列 骨重建 基因 微生物学 细胞生物学 免疫学 基因表达 体外 医学 遗传学 病理
作者
Khushpreet Kaur,Sumedha Sharma,Sudhanshu Abhishek,Prabhdeep Kaur,Uttam Chand Saini,Mandeep Singh Dhillon,Petros C. Karakousis,Indu Verma
出处
期刊:Journal of Infection [Elsevier BV]
卷期号:86 (2): 134-146 被引量:9
标识
DOI:10.1016/j.jinf.2022.12.014
摘要

Objectives Bone tuberculosis (TB) is the third most common types of extrapulmonary tuberculosis. It is critical to understand mycobacterial adaptive strategies within bone lesions to identify mycobacterial factors that may have role in disease pathogenesis. Methods Whole genome microarray was used to characterize the in-vivo transcriptome of Mycobacterium tuberculosis (M.tb) within bone TB specimens. Mycobacterial virulent proteins were identified by bioinformatic software. An in vitro osteoblast cell line model was used to study the role of these proteins in bone TB pathogenesis. Results 914 mycobacterial genes were significantly overexpressed and 1688 were repressed in bone TB specimens. Pathway analysis of differentially expressed genes demonstrated a non-replicative and hypometabolic state of M.tb, reinforcement of the mycobacterial cell wall and induction of DNA damage repair responses, suggesting possible survival strategies of M.tb within bone. Bioinformatics mining of microarray data led to identification of five virulence proteins. The genes encoding these proteins were also upregulated in the in vitro MC3T3 osteoblast cell line model of bone TB. Further, exposure of osteoblast cells to two of these virulence proteins (Rv1046c and Rv3663c) significantly inhibited osteoblast differentiation. Conclusion M.tb alters its transcriptome to establish infection in bone by upregulating certain virulence genes which play a key role in disturbing bone homeostasis.
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