Literature DB >> 28135421

Hypoxia Sensing and Persistence Genes Are Expressed during the Intragranulomatous Survival of Mycobacterium tuberculosis.

Teresa A Hudock1,2, Taylor W Foreman1,2, Nirmalya Bandyopadhyay3, Uma S Gautam1, Ashley V Veatch1,2, Denae N LoBato1, Kaylee M Gentry1, Nadia A Golden1, Amy Cavigli1, Michelle Mueller1, Shen-An Hwang4, Robert L Hunter4, Xavier Alvarez1, Andrew A Lackner1,2, Joel S Bader3, Smriti Mehra5, Deepak Kaushal1,2.   

Abstract

Although it is accepted that the environment within the granuloma profoundly affects Mycobacterium tuberculosis (Mtb) and infection outcome, our ability to understand Mtb gene expression in these niches has been limited. We determined intragranulomatous gene expression in human-like lung lesions derived from nonhuman primates with both active tuberculosis (ATB) and latent TB infection (LTBI). We employed a non-laser-based approach to microdissect individual lung lesions and interrogate the global transcriptome of Mtb within granulomas. Mtb genes expressed in classical granulomas with central, caseous necrosis, as well as within the caseum itself, were identified and compared with other Mtb lesions in animals with ATB (n = 7) or LTBI (n = 7). Results were validated using both an oligonucleotide approach and RT-PCR on macaque samples and by using human TB samples. We detected approximately 2,900 and 1,850 statistically significant genes in ATB and LTBI lesions, respectively (linear models for microarray analysis, Bonferroni corrected, P < 0.05). Of these genes, the expression of approximately 1,300 (ATB) and 900 (LTBI) was positively induced. We identified the induction of key regulons and compared our results to genes previously determined to be required for Mtb growth. Our results indicate pathways that Mtb uses to ensure its survival in a highly stressful environment in vivo. A large number of genes is commonly expressed in granulomas with ATB and LTBI. In addition, the enhanced expression of the dormancy survival regulon was a key feature of lesions in animals with LTBI, stressing its importance in the persistence of Mtb during the chronic phase of infection.

Entities:  

Keywords:  Mycobacterium tuberculosis; granuloma; hypoxia; macaque; microdissection

Mesh:

Year:  2017        PMID: 28135421      PMCID: PMC5449490          DOI: 10.1165/rcmb.2016-0239OC

Source DB:  PubMed          Journal:  Am J Respir Cell Mol Biol        ISSN: 1044-1549            Impact factor:   6.914


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