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Molecular Cloning and Bioinformatics Analysis of DQA Gene from Mink (Neovison vison)

In the present study, we cloned, sequenced, and explored the structural and functional characteristics of the major histocompatibility complex (MHC)-DQA gene from mink (Neovison vison) for the first time. The full-length sequence of DQA gene was 1147-bp-long, contained a coding region of 768-bp, whi...

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Autores principales: Fan, Zhaobin, Zhang, Houfeng, Rong, Min, Meng, Dongmei, Yu, Zhenxing, Jiang, Lili, Jiang, Peihong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6429307/
https://www.ncbi.nlm.nih.gov/pubmed/30818831
http://dx.doi.org/10.3390/ijms20051037
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author Fan, Zhaobin
Zhang, Houfeng
Rong, Min
Meng, Dongmei
Yu, Zhenxing
Jiang, Lili
Jiang, Peihong
author_facet Fan, Zhaobin
Zhang, Houfeng
Rong, Min
Meng, Dongmei
Yu, Zhenxing
Jiang, Lili
Jiang, Peihong
author_sort Fan, Zhaobin
collection PubMed
description In the present study, we cloned, sequenced, and explored the structural and functional characteristics of the major histocompatibility complex (MHC)-DQA gene from mink (Neovison vison) for the first time. The full-length sequence of DQA gene was 1147-bp-long, contained a coding region of 768-bp, which was predicted to encoding 255 amino acid residues. The comparison between DQA from mink (Neovison vison) and other MHC-DQA molecules from different animal species showed that nucleotide and encoded amino acid sequences of the mink DQA gene exhibited high similarity with the ferret (Mustela pulourius furo). Phylogenetic analysis revealed that mink (Neovison vison) DQA is grouped with that of ferret (Mustela pulourius furo). The cloned sequence contained a 23-amino acid NH(2)-terminal signal sequence with the signal peptide cutting site located in amino acids 23–24, and had three Asn-Xaa-Ser/Thr sequons. Three cysteine residues were also identified (Cys-85, Cys-121, and Cys-138). The 218 to 240 amino acids were predicted to be the transmembrane domains. The prediction of the secondary structure revealed three α-helixes and fourteen β-sheets in Neovison vison DQA protein, while random coil was a major pattern. In this study, the whole CDS sequence of Neovison vison DQA gene was successfully cloned, which was valuable for exploring the function and antiviral molecular mechanisms underlying the molecule. The findings of the present study have laid the foundation for the disease resistance and breeding of mink.
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spelling pubmed-64293072019-04-10 Molecular Cloning and Bioinformatics Analysis of DQA Gene from Mink (Neovison vison) Fan, Zhaobin Zhang, Houfeng Rong, Min Meng, Dongmei Yu, Zhenxing Jiang, Lili Jiang, Peihong Int J Mol Sci Communication In the present study, we cloned, sequenced, and explored the structural and functional characteristics of the major histocompatibility complex (MHC)-DQA gene from mink (Neovison vison) for the first time. The full-length sequence of DQA gene was 1147-bp-long, contained a coding region of 768-bp, which was predicted to encoding 255 amino acid residues. The comparison between DQA from mink (Neovison vison) and other MHC-DQA molecules from different animal species showed that nucleotide and encoded amino acid sequences of the mink DQA gene exhibited high similarity with the ferret (Mustela pulourius furo). Phylogenetic analysis revealed that mink (Neovison vison) DQA is grouped with that of ferret (Mustela pulourius furo). The cloned sequence contained a 23-amino acid NH(2)-terminal signal sequence with the signal peptide cutting site located in amino acids 23–24, and had three Asn-Xaa-Ser/Thr sequons. Three cysteine residues were also identified (Cys-85, Cys-121, and Cys-138). The 218 to 240 amino acids were predicted to be the transmembrane domains. The prediction of the secondary structure revealed three α-helixes and fourteen β-sheets in Neovison vison DQA protein, while random coil was a major pattern. In this study, the whole CDS sequence of Neovison vison DQA gene was successfully cloned, which was valuable for exploring the function and antiviral molecular mechanisms underlying the molecule. The findings of the present study have laid the foundation for the disease resistance and breeding of mink. MDPI 2019-02-27 /pmc/articles/PMC6429307/ /pubmed/30818831 http://dx.doi.org/10.3390/ijms20051037 Text en © 2019 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 Communication
Fan, Zhaobin
Zhang, Houfeng
Rong, Min
Meng, Dongmei
Yu, Zhenxing
Jiang, Lili
Jiang, Peihong
Molecular Cloning and Bioinformatics Analysis of DQA Gene from Mink (Neovison vison)
title Molecular Cloning and Bioinformatics Analysis of DQA Gene from Mink (Neovison vison)
title_full Molecular Cloning and Bioinformatics Analysis of DQA Gene from Mink (Neovison vison)
title_fullStr Molecular Cloning and Bioinformatics Analysis of DQA Gene from Mink (Neovison vison)
title_full_unstemmed Molecular Cloning and Bioinformatics Analysis of DQA Gene from Mink (Neovison vison)
title_short Molecular Cloning and Bioinformatics Analysis of DQA Gene from Mink (Neovison vison)
title_sort molecular cloning and bioinformatics analysis of dqa gene from mink (neovison vison)
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6429307/
https://www.ncbi.nlm.nih.gov/pubmed/30818831
http://dx.doi.org/10.3390/ijms20051037
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