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T cell dynamics and response of the microbiota after gene therapy to treat X-linked severe combined immunodeficiency

Authors :
Erik L. Clarke
A. Jesse Connell
Emmanuelle Six
Nadia A. Kadry
Arwa A. Abbas
Young Hwang
John K. Everett
Casey E. Hofstaedter
Rebecca Marsh
Myriam Armant
Judith Kelsen
Luigi D. Notarangelo
Ronald G. Collman
Salima Hacein-Bey-Abina
Donald B. Kohn
Marina Cavazzana
Alain Fischer
David A. Williams
Sung-Yun Pai
Frederic D. Bushman
Source :
Genome Medicine, Vol 10, Iss 1, Pp 1-14 (2018)
Publication Year :
2018
Publisher :
BMC, 2018.

Abstract

Abstract Background Mutation of the IL2RG gene results in a form of severe combined immune deficiency (SCID-X1), which has been treated successfully with hematopoietic stem cell gene therapy. SCID-X1 gene therapy results in reconstitution of the previously lacking T cell compartment, allowing analysis of the roles of T cell immunity in humans by comparing before and after gene correction. Methods Here we interrogate T cell reconstitution using four forms of high throughput analysis. (1) Estimation of the numbers of transduced progenitor cells by monitoring unique positions of integration of the therapeutic gene transfer vector. (2) Estimation of T cell population structure by sequencing of the recombined T cell receptor (TCR) beta locus. (3) Metagenomic analysis of microbial populations in oropharyngeal, nasopharyngeal, and gut samples. (4) Metagenomic analysis of viral populations in gut samples. Results Comparison of progenitor and mature T cell populations allowed estimation of a minimum number of cell divisions needed to generate the observed populations. Analysis of microbial populations showed the effects of immune reconstitution, including normalization of gut microbiota and clearance of viral infections. Metagenomic analysis revealed enrichment of genes for antibiotic resistance in gene-corrected subjects relative to healthy controls, likely a result of higher healthcare exposure. Conclusions This multi-omic approach enables the characterization of multiple effects of SCID-X1 gene therapy, including T cell repertoire reconstitution, estimation of numbers of cell divisions between progenitors and daughter T cells, normalization of the microbiome, clearance of microbial pathogens, and modulations in antibiotic resistance gene levels. Together, these results quantify several aspects of the long-term efficacy of gene therapy for SCID-X1. This study includes data from ClinicalTrials.gov numbers NCT01410019, NCT01175239, and NCT01129544.

Subjects

Subjects :
Medicine
Genetics
QH426-470

Details

Language :
English
ISSN :
1756994X and 61714518
Volume :
10
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Genome Medicine
Publication Type :
Academic Journal
Accession number :
edsdoj.3e61033ef32c4bfb98b5c61714518c31
Document Type :
article
Full Text :
https://doi.org/10.1186/s13073-018-0580-z