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Natural selection in a bangladeshi population from the cholera-endemic ganges river delta

Authors
Karlsson, E.K.Harris, J.B.Tabrizi, S.Rahman, A.Shlyakhter, I.Patterson, N.O'Dushlaine, C.Schaffner, S.F.Gupta, S.Chowdhury, F.Sheikh, A.Shin, O.S.Ellis, C.Becker, C.E.Stuart, L.M.Calderwood, S.B.Ryan, E.T.Qadri, F.Sabeti, P.C.LaRocque, R.C.
Issue Date
2013
Citation
Science Translational Medicine, v.5, no.192
Indexed
SCIE
SCOPUS
Journal Title
Science Translational Medicine
Volume
5
Number
192
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/105906
DOI
10.1126/scitranslmed.3006338
ISSN
1946-6234
Abstract
As an ancient disease with high fatality, cholera has likely exerted strong selective pressure on affected human populations. We performed a genome-wide study of natural selection in a population from the Ganges River Delta, the historic geographic epicenter of cholera. We identified 305 candidate selected regions using the composite of multiple signals (CMS) method. The regions were enriched for potassium channel genes involved in cyclic adenosine monophosphate-mediated chloride secretion and for components of the innate immune system involved in nuclear factor κB (NF-κB) signaling. We demonstrate that a number of these strongly selected genes are associated with cholera susceptibility in two separate cohorts. We further identify repeated examples of selection and association in an NF-κB/inflammasome-dependent pathway that is activated in vitro by Vibrio cholerae. Our findings shed light on the genetic basis of cholera resistance in a population from the Ganges River Delta and present a promising approach for identifying genetic factors influencing susceptibility to infectious diseases. Copyright 2013 by the American Association for the Advancement of Science; all rights reserved.
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