Babesia duncani multi-omics identifies virulence factors and drug targets

被引:0
|
作者
Pallavi Singh
Stefano Lonardi
Qihua Liang
Pratap Vydyam
Eleonora Khabirova
Tiffany Fang
Shalev Gihaz
Jose Thekkiniath
Muhammad Munshi
Steven Abel
Loic Ciampossin
Gayani Batugedara
Mohit Gupta
Xueqing Maggie Lu
Todd Lenz
Sakshar Chakravarty
Emmanuel Cornillot
Yangyang Hu
Wenxiu Ma
Luis Miguel Gonzalez
Sergio Sánchez
Karel Estrada
Alejandro Sánchez-Flores
Estrella Montero
Omar S. Harb
Karine G. Le Roch
Choukri Ben Mamoun
机构
[1] Yale School of Medicine,Department of Internal Medicine, Section of Infectious Diseases
[2] University of California,Department of Computer Science and Engineering
[3] University of California,Department of Statistics
[4] University of California,Department of Molecular, Cell and Systems Biology
[5] Institut de Biologie Computationnelle (IBC),Parasitology Reference and Research Laboratory, National Centre for Microbiology
[6] and Institut de Recherche en Cancérologie de Montpellier (IRCM - INSERM U1194),Reference and Research Laboratory on Food and Waterborne Bacterial Infections, National Centre for Microbiology
[7] Institut régional du Cancer Montpellier (ICM) and Université de Montpellier,Unidad Universitaria de Secuenciación Masiva y Bioinformática, Instituto de Biotecnología
[8] Instituto de Salud Carlos III,Department of Biology
[9] Majadahonda,undefined
[10] Instituto de Salud Carlos III,undefined
[11] Majadahonda,undefined
[12] Universidad Nacional Autónoma de México,undefined
[13] University of Pennsylvania,undefined
来源
Nature Microbiology | 2023年 / 8卷
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摘要
Babesiosis is a malaria-like disease in humans and animals that is caused by Babesia species, which are tick-transmitted apicomplexan pathogens. Babesia duncani causes severe to lethal infection in humans, but despite the risk that this parasite poses as an emerging pathogen, little is known about its biology, metabolic requirements or pathogenesis. Unlike other apicomplexan parasites that infect red blood cells, B. duncani can be continuously cultured in vitro in human erythrocytes and can infect mice resulting in fulminant babesiosis and death. We report comprehensive, detailed molecular, genomic, transcriptomic and epigenetic analyses to gain insights into the biology of B. duncani. We completed the assembly, 3D structure and annotation of its nuclear genome, and analysed its transcriptomic and epigenetics profiles during its asexual life cycle stages in human erythrocytes. We used RNA-seq data to produce an atlas of parasite metabolism during its intraerythrocytic life cycle. Characterization of the B. duncani genome, epigenome and transcriptome identified classes of candidate virulence factors, antigens for diagnosis of active infection and several attractive drug targets. Furthermore, metabolic reconstitutions from genome annotation and in vitro efficacy studies identified antifolates, pyrimethamine and WR-99210 as potent inhibitors of B. duncani to establish a pipeline of small molecules that could be developed as effective therapies for the treatment of human babesiosis.
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页码:845 / 859
页数:14
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