bioRxiv · 10.1101/2021.01.04.425357
Rv3737 is required for Mycobacterium tuberculosis growth in vitro and in vivo and correlates with bacterial load and disease severity in human tuberculosis
Abstract
Rv3737 is the sole homologue of multifunctional transporter ThrE in Mycobacterium tuberculosis (Mtb). In this study, we aimed to investigate whether this transporter participates in vitro and in vivo survival of Mtb. To characterize the role of Rv3737, we constructed and characterized an Mtb H37Rv{Delta}Rv3737. This strain was evaluated for altered growth rate and macrophage survival using cell model of infection. In addition, the comparative analysis was conducted to determine the association between Rv3737 mRNA expression and disease severity in active pulmonary TB patients. The H37Rv{Delta}Rv3737 strain exhibited significant slow growth rate compared to H37Rv-WT strain in standard culture medium. Additionally, the survival rate of H37Rv-WT strain in macrophages was 2 folds higher than that of H37Rv{Delta}Rv3737 at 72 h. A significant higher level of TNF- and IL-6 mRNA expression was observed in macrophages infected with H37Rv{Delta}Rv3737 as compared to H37Rv-WT. Of note, Rv3737 expression was significantly increased in clinical Mtb isolates than H37Rv-WT. The relative expression level of Rv3737 was positively correlated with lung cavity number in TB patients. Similarly, the higher Rv3737 mRNA level resulted in lower C(t) value by Xpert MTB/RIF assay, demonstrating that a positive correlation between Rv3737 expression and bacterial load in TB patients. In conclusion, our data is the first to demonstrate that the transporter Rv3737 is required for in vitro growth and survival of bacteria inside macrophages. In addition, the expression level of Rv3737 is associated with bacterial load and disease severity in pulmonary tuberculosis patients.
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Pang, Y., Li, Q., Peng, Z., Fu, X., Wang, H., Zhao, Z., Chen, L.. 2021-01-05. Rv3737 is required for Mycobacterium tuberculosis growth in vitro and in vivo and correlates with bacterial load and disease severity in human tuberculosis. https://doi.org/10.1101/2021.01.04.425357
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