Mycobacterium tuberculosis progresses through two phases of latent infection in humans

Author:

Colangeli Roberto,Gupta Aditi,Vinhas Solange Alves,Chippada Venkata Uma Deepthi,Kim Soyeon,Grady Courtney,Jones-López Edward C.ORCID,Soteropoulos Patricia,Palaci Moisés,Marques-Rodrigues Patrícia,Salgame Padmini,Ellner Jerrold J.,Dietze Reynaldo,Alland DavidORCID

Abstract

AbstractLittle is known about the physiology of latent Mycobacterium tuberculosis infection. We studied the mutational rates of 24 index tuberculosis (TB) cases and their latently infected household contacts who developed active TB up to 5.25 years later, as an indication of bacterial physiological state and possible generation times during latent TB infection in humans. Here we report that the rate of new mutations in the M. tuberculosis genome decline dramatically after two years of latent infection (two-sided p < 0.001, assuming an 18 h generation time equal to log phase M. tuberculosis, with latency period modeled as a continuous variable). Alternatively, assuming a fixed mutation rate, the generation time increases over the latency duration. Mutations indicative of oxidative stress do not increase with increasing latency duration suggesting a lack of host or bacterial derived mutational stress. These results suggest that M. tuberculosis enters a quiescent state during latency, decreasing the risk for mutational drug resistance and increasing generation time, but potentially increasing bacterial tolerance to drugs that target actively growing bacteria.

Funder

Division of Intramural Research, National Institute of Allergy and Infectious Diseases

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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