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Characterization of an N-Terminal Non-Core Domain of RAG1 Gene Disrupted Syrian Hamster Model Generated by CRISPR Cas9

The accumulating evidence demonstrates that Syrian hamsters have advantages as models for various diseases. To develop a Syrian hamster (Mesocricetus auratus) model of human immunodeficiency caused by RAG1 gene mutations, we employed the CRISPR/Cas9 system and introduced an 86-nucleotide frameshift...

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Autores principales: Miao, Jinxin, Ying, Baoling, Li, Rong, Tollefson, Ann E., Spencer, Jacqueline F., Wold, William S. M., Song, Seok-Hwan, Kong, Il-Keun, Toth, Karoly, Wang, Yaohe, Wang, Zhongde
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5977236/
https://www.ncbi.nlm.nih.gov/pubmed/29734775
http://dx.doi.org/10.3390/v10050243
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author Miao, Jinxin
Ying, Baoling
Li, Rong
Tollefson, Ann E.
Spencer, Jacqueline F.
Wold, William S. M.
Song, Seok-Hwan
Kong, Il-Keun
Toth, Karoly
Wang, Yaohe
Wang, Zhongde
author_facet Miao, Jinxin
Ying, Baoling
Li, Rong
Tollefson, Ann E.
Spencer, Jacqueline F.
Wold, William S. M.
Song, Seok-Hwan
Kong, Il-Keun
Toth, Karoly
Wang, Yaohe
Wang, Zhongde
author_sort Miao, Jinxin
collection PubMed
description The accumulating evidence demonstrates that Syrian hamsters have advantages as models for various diseases. To develop a Syrian hamster (Mesocricetus auratus) model of human immunodeficiency caused by RAG1 gene mutations, we employed the CRISPR/Cas9 system and introduced an 86-nucleotide frameshift deletion in the hamster RAG1 gene encoding part of the N-terminal non-core domain of RAG1. Histological and immunohistochemical analyses demonstrated that these hamsters (referred herein as RAG1-86nt hamsters) had atrophic spleen and thymus, and developed significantly less white pulp and were almost completely devoid of splenic lymphoid follicles. The RAG1-nt86 hamsters had barely detectable CD3(+) and CD4(+) T cells. The expression of B and T lymphocyte-specific genes (CD3γ and CD4 for T cell-specific) and (CD22 and FCMR for B cell-specific) was dramatically reduced, whereas the expression of macrophage-specific (CD68) and natural killer (NK) cell-specific (CD94 and KLRG1) marker genes was increased in the spleen of RAG1-nt86 hamsters compared to wildtype hamsters. Interestingly, despite the impaired development of B and T lymphocytes, the RAG1-86nt hamsters still developed neutralizing antibodies against human adenovirus type C6 (HAdV-C6) upon intranasal infection and were capable of clearing the infectious viruses, albeit with slower kinetics. Therefore, the RAG1-86nt hamster reported herein (similar to the hypomorphic RAG1 mutations in humans that cause Omenn syndrome), may provide a useful model for studying the pathogenesis of the specific RAG1-mutation-induced human immunodeficiency, the host immune response to adenovirus infection and other pathogens as well as for evaluation of cell and gene therapies for treatment of this subset of RAG1 mutation patients.
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spelling pubmed-59772362018-06-01 Characterization of an N-Terminal Non-Core Domain of RAG1 Gene Disrupted Syrian Hamster Model Generated by CRISPR Cas9 Miao, Jinxin Ying, Baoling Li, Rong Tollefson, Ann E. Spencer, Jacqueline F. Wold, William S. M. Song, Seok-Hwan Kong, Il-Keun Toth, Karoly Wang, Yaohe Wang, Zhongde Viruses Article The accumulating evidence demonstrates that Syrian hamsters have advantages as models for various diseases. To develop a Syrian hamster (Mesocricetus auratus) model of human immunodeficiency caused by RAG1 gene mutations, we employed the CRISPR/Cas9 system and introduced an 86-nucleotide frameshift deletion in the hamster RAG1 gene encoding part of the N-terminal non-core domain of RAG1. Histological and immunohistochemical analyses demonstrated that these hamsters (referred herein as RAG1-86nt hamsters) had atrophic spleen and thymus, and developed significantly less white pulp and were almost completely devoid of splenic lymphoid follicles. The RAG1-nt86 hamsters had barely detectable CD3(+) and CD4(+) T cells. The expression of B and T lymphocyte-specific genes (CD3γ and CD4 for T cell-specific) and (CD22 and FCMR for B cell-specific) was dramatically reduced, whereas the expression of macrophage-specific (CD68) and natural killer (NK) cell-specific (CD94 and KLRG1) marker genes was increased in the spleen of RAG1-nt86 hamsters compared to wildtype hamsters. Interestingly, despite the impaired development of B and T lymphocytes, the RAG1-86nt hamsters still developed neutralizing antibodies against human adenovirus type C6 (HAdV-C6) upon intranasal infection and were capable of clearing the infectious viruses, albeit with slower kinetics. Therefore, the RAG1-86nt hamster reported herein (similar to the hypomorphic RAG1 mutations in humans that cause Omenn syndrome), may provide a useful model for studying the pathogenesis of the specific RAG1-mutation-induced human immunodeficiency, the host immune response to adenovirus infection and other pathogens as well as for evaluation of cell and gene therapies for treatment of this subset of RAG1 mutation patients. MDPI 2018-05-06 /pmc/articles/PMC5977236/ /pubmed/29734775 http://dx.doi.org/10.3390/v10050243 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Miao, Jinxin
Ying, Baoling
Li, Rong
Tollefson, Ann E.
Spencer, Jacqueline F.
Wold, William S. M.
Song, Seok-Hwan
Kong, Il-Keun
Toth, Karoly
Wang, Yaohe
Wang, Zhongde
Characterization of an N-Terminal Non-Core Domain of RAG1 Gene Disrupted Syrian Hamster Model Generated by CRISPR Cas9
title Characterization of an N-Terminal Non-Core Domain of RAG1 Gene Disrupted Syrian Hamster Model Generated by CRISPR Cas9
title_full Characterization of an N-Terminal Non-Core Domain of RAG1 Gene Disrupted Syrian Hamster Model Generated by CRISPR Cas9
title_fullStr Characterization of an N-Terminal Non-Core Domain of RAG1 Gene Disrupted Syrian Hamster Model Generated by CRISPR Cas9
title_full_unstemmed Characterization of an N-Terminal Non-Core Domain of RAG1 Gene Disrupted Syrian Hamster Model Generated by CRISPR Cas9
title_short Characterization of an N-Terminal Non-Core Domain of RAG1 Gene Disrupted Syrian Hamster Model Generated by CRISPR Cas9
title_sort characterization of an n-terminal non-core domain of rag1 gene disrupted syrian hamster model generated by crispr cas9
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5977236/
https://www.ncbi.nlm.nih.gov/pubmed/29734775
http://dx.doi.org/10.3390/v10050243
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