Author:
Chaurasiya Ayushi,Garg Swati,Khanna Ashish,Narayana Chintam,Dwivedi Ved Prakash,Joshi Nishant,e Anam Zill,Singh Niharika,Singhal Jhalak,Kaushik Shikha,Kaur Kahlon Amandeep,Srivastava Pallavi,Marothia Manisha,Kumar Mukesh,Kumar Santosh,Kumari Geeta,Munjal Akshay,Gupta Sonal,Singh Preeti,Pati Soumya,Das Gobardhan,Sagar Ram,Ranganathan Anand,Singh Shailja
Abstract
AbstractHijacking of host metabolic status by a pathogen for its regulated dissemination from the host is prerequisite for the propagation of infection. M. tuberculosis secretes an NAD+-glycohydrolase, TNT, to induce host necroptosis by hydrolyzing Nicotinamide adenine dinucleotide (NAD+). Herein, we expressed TNT in macrophages and erythrocytes; the host cells for M. tuberculosis and the malaria parasite respectively, and found that it reduced the NAD+ levels and thereby induced necroptosis and eryptosis resulting in premature dissemination of pathogen. Targeting TNT in M. tuberculosis or induced eryptosis in malaria parasite interferes with pathogen dissemination and reduction in the propagation of infection. Building upon our discovery that inhibition of pathogen-mediated host NAD+ modulation is a way forward for regulation of infection, we synthesized and screened some novel compounds that showed inhibition of NAD+-glycohydrolase activity and pathogen infection in the nanomolar range. Overall this study highlights the fundamental importance of pathogen-mediated modulation of host NAD+ homeostasis for its infection propagation and novel inhibitors as leads for host-targeted therapeutics.
Funder
DST | Science and Engineering Research Board
Department of Science and Technology, Ministry of Science and Technology
Publisher
Springer Science and Business Media LLC
Subject
Cancer Research,Cell Biology,Cellular and Molecular Neuroscience,Immunology
Cited by
11 articles.
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