Hydrogen sulfide stimulates Mycobacterium tuberculosis respiration, growth and pathogenesis

硫化氢刺激结核分枝杆菌的呼吸、生长和致病性

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作者:Vikram Saini ,Krishna C Chinta ,Vineel P Reddy ,Joel N Glasgow ,Asaf Stein ,Dirk A Lamprecht ,Md Aejazur Rahman ,Jared S Mackenzie ,Barry E Truebody ,John H Adamson ,Tafara T R Kunota ,Shannon M Bailey ,Douglas R Moellering ,Jack R Lancaster Jr ,Adrie J C Steyn

Abstract

Hydrogen sulfide (H2S) is involved in numerous pathophysiological processes and shares overlapping functions with CO and •NO. However, the importance of host-derived H2S in microbial pathogenesis is unknown. Here we show that Mtb-infected mice deficient in the H2S-producing enzyme cystathionine β-synthase (CBS) survive longer with reduced organ burden, and that pharmacological inhibition of CBS reduces Mtb bacillary load in mice. High-resolution respirometry, transcriptomics and mass spectrometry establish that H2S stimulates Mtb respiration and bioenergetics predominantly via cytochrome bd oxidase, and that H2S reverses •NO-mediated inhibition of Mtb respiration. Further, exposure of Mtb to H2S regulates genes involved in sulfur and copper metabolism and the Dos regulon. Our results indicate that Mtb exploits host-derived H2S to promote growth and disease, and suggest that host-directed therapies targeting H2S production may be potentially useful for the management of tuberculosis and other microbial infections.

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