Literature DB >> 26349955

Discovery of novel MHC-class I alleles and haplotypes in Filipino cynomolgus macaques (Macaca fascicularis) by pyrosequencing and Sanger sequencing: Mafa-class I polymorphism.

Takashi Shiina1, Yukiho Yamada2,3, Alice Aarnink4, Shingo Suzuki2, Anri Masuya2, Sayaka Ito2, Daisuke Ido3, Hisashi Yamanaka3, Chizuru Iwatani5, Hideaki Tsuchiya5, Hirohito Ishigaki6, Yasushi Itoh6, Kazumasa Ogasawara6, Jerzy K Kulski2,7, Antoine Blancher4.   

Abstract

Although the low polymorphism of the major histocompatibility complex (MHC) transplantation genes in the Filipino cynomolgus macaque (Macaca fascicularis) is expected to have important implications in the selection and breeding of animals for medical research, detailed polymorphism information is still lacking for many of the duplicated class I genes. To better elucidate the degree and types of MHC polymorphisms and haplotypes in the Filipino macaque population, we genotyped 127 unrelated animals by the Sanger sequencing method and high-resolution pyrosequencing and identified 112 different alleles, 28 at cynomolgus macaque MHC (Mafa)-A, 54 at Mafa-B, 12 at Mafa-I, 11 at Mafa-E, and seven at Mafa-F alleles, of which 56 were newly described. Of them, the newly discovered Mafa-A8*01:01 lineage allele had low nucleotide similarities (<86%) with primate MHC class I genes, and it was also conserved in the Vietnamese and Indonesian populations. In addition, haplotype estimations revealed 17 Mafa-A, 23 Mafa-B, and 12 Mafa-E haplotypes integrated with 84 Mafa-class I haplotypes and Mafa-F alleles. Of these, the two Mafa-class I haplotypes, F/A/E/B-Hp1 and F/A/E/B-Hp2, had the highest haplotype frequencies at 10.6 and 10.2%, respectively. This suggests that large scale genetic screening of the Filipino macaque population would identify these and other high-frequency Mafa-class I haplotypes that could be used as MHC control animals for the benefit of biomedical research.

Entities:  

Keywords:  Cynomolgus macaque; Haplotype; MHC; Major histocompatibility complex; NGS; Next generation sequencing; Polymorphism; Sanger sequencing

Mesh:

Substances:

Year:  2015        PMID: 26349955     DOI: 10.1007/s00251-015-0867-9

Source DB:  PubMed          Journal:  Immunogenetics        ISSN: 0093-7711            Impact factor:   2.846


  62 in total

1.  Comparative phylogenetics offer new insights into the biogeographic history of Macaca fascicularis and the origin of the Mauritian macaques.

Authors:  Anthony J Tosi; Cathryn S Coke
Journal:  Mol Phylogenet Evol       Date:  2006-08-11       Impact factor: 4.286

2.  TimeTree: a public knowledge-base of divergence times among organisms.

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Journal:  Bioinformatics       Date:  2006-10-04       Impact factor: 6.937

3.  Genetic diversity of longtail macaques (Macaca fascicularis) on the island of Mauritius: an assessment of nuclear and mitochondrial DNA polymorphisms.

Authors:  Y Kawamoto; S Kawamoto; K Matsubayashi; K Nozawa; T Watanabe; M-A Stanley; D Perwitasari-Farajallah
Journal:  J Med Primatol       Date:  2008-02       Impact factor: 0.667

4.  The neighbor-joining method: a new method for reconstructing phylogenetic trees.

Authors:  N Saitou; M Nei
Journal:  Mol Biol Evol       Date:  1987-07       Impact factor: 16.240

5.  Study of Cynomolgus monkey (Macaca fascicularis) MhcDRB (Mafa-DRB) polymorphism in two populations.

Authors:  Antoine Blancher; Pierre Tisseyre; Marianne Dutaur; Pol-André Apoil; Claudine Maurer; Valérie Quesniaux; Friedrich Raulf; Marc Bigaud; Michel Abbal
Journal:  Immunogenetics       Date:  2006-03-30       Impact factor: 2.846

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Journal:  Nature       Date:  2006-08-23       Impact factor: 49.962

7.  Identification of MHC class I sequences in Chinese-origin rhesus macaques.

Authors:  Julie A Karl; Roger W Wiseman; Kevin J Campbell; Alex J Blasky; Austin L Hughes; Betsy Ferguson; Daniel S Read; David H O'Connor
Journal:  Immunogenetics       Date:  2007-12-21       Impact factor: 2.846

8.  MHC class I A loci polymorphism and diversity in three Southeast Asian populations of cynomolgus macaque.

Authors:  Yuki F Kita; Kazuyoshi Hosomichi; Sakae Kohara; Yasushi Itoh; Kazumasa Ogasawara; Hideaki Tsuchiya; Ryuzo Torii; Hidetoshi Inoko; Antoine Blancher; Jerzy K Kulski; Takashi Shiina
Journal:  Immunogenetics       Date:  2009-08-01       Impact factor: 2.846

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Authors:  James Robinson; Jason A Halliwell; Hamish McWilliam; Rodrigo Lopez; Steven G E Marsh
Journal:  Nucleic Acids Res       Date:  2012-11-24       Impact factor: 16.971

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  19 in total

Review 1.  Comparative genomics of the human, macaque and mouse major histocompatibility complex.

Authors:  Takashi Shiina; Antoine Blancher; Hidetoshi Inoko; Jerzy K Kulski
Journal:  Immunology       Date:  2016-07-10       Impact factor: 7.397

2.  Major histocompatibility complex haplotyping and long-amplicon allele discovery in cynomolgus macaques from Chinese breeding facilities.

Authors:  Julie A Karl; Michael E Graham; Roger W Wiseman; Katelyn E Heimbruch; Samantha M Gieger; Gaby G M Doxiadis; Ronald E Bontrop; David H O'Connor
Journal:  Immunogenetics       Date:  2017-01-11       Impact factor: 2.846

3.  Allogeneic transplantation of iPS cell-derived cardiomyocytes regenerates primate hearts.

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Journal:  Nature       Date:  2016-10-10       Impact factor: 49.962

4.  Haplotype structures and polymorphisms of dog leukocyte antigen (DLA) class I loci shaped by intralocus and interlocus recombination events.

Authors:  Jiro Miyamae; Masaharu Okano; Kohei Nishiya; Fumihiko Katakura; Jerzy K Kulski; Tadaaki Moritomo; Takashi Shiina
Journal:  Immunogenetics       Date:  2022-01-07       Impact factor: 2.846

5.  Nomenclature report 2019: major histocompatibility complex genes and alleles of Great and Small Ape and Old and New World monkey species.

Authors:  Natasja G de Groot; Nel Otting; Giuseppe Maccari; James Robinson; John A Hammond; Antoine Blancher; Bernard A P Lafont; Lisbeth A Guethlein; Emily E Wroblewski; Steven G E Marsh; Takashi Shiina; Lutz Walter; Linda Vigilant; Peter Parham; David H O'Connor; Ronald E Bontrop
Journal:  Immunogenetics       Date:  2019-10-17       Impact factor: 2.846

6.  Successful Transplantation of Retinal Pigment Epithelial Cells from MHC Homozygote iPSCs in MHC-Matched Models.

Authors:  Sunao Sugita; Yuko Iwasaki; Kenichi Makabe; Hiroyuki Kamao; Michiko Mandai; Takashi Shiina; Kazumasa Ogasawara; Yasuhiko Hirami; Yasuo Kurimoto; Masayo Takahashi
Journal:  Stem Cell Reports       Date:  2016-09-15       Impact factor: 7.765

7.  Cardiomyocytes Derived from MHC-Homozygous Induced Pluripotent Stem Cells Exhibit Reduced Allogeneic Immunogenicity in MHC-Matched Non-human Primates.

Authors:  Takuji Kawamura; Shigeru Miyagawa; Satsuki Fukushima; Akira Maeda; Noriyuki Kashiyama; Ai Kawamura; Kenji Miki; Keisuke Okita; Yoshinori Yoshida; Takashi Shiina; Kazumasa Ogasawara; Shuji Miyagawa; Koichi Toda; Hiroomi Okuyama; Yoshiki Sawa
Journal:  Stem Cell Reports       Date:  2016-02-18       Impact factor: 7.765

8.  Analysis of conserved miRNAs in cynomolgus macaque genome using small RNA sequencing and homology searching.

Authors:  Xia Huang; Shijia Li; Xiaoming Liu; Shuting Huang; Shuang Li; Min Zhuo
Journal:  PeerJ       Date:  2020-07-10       Impact factor: 2.984

9.  MHC matching improves engraftment of iPSC-derived neurons in non-human primates.

Authors:  Asuka Morizane; Tetsuhiro Kikuchi; Takuya Hayashi; Hiroshi Mizuma; Sayuki Takara; Hisashi Doi; Aya Mawatari; Matthew F Glasser; Takashi Shiina; Hirohito Ishigaki; Yasushi Itoh; Keisuke Okita; Emi Yamasaki; Daisuke Doi; Hirotaka Onoe; Kazumasa Ogasawara; Shinya Yamanaka; Jun Takahashi
Journal:  Nat Commun       Date:  2017-08-30       Impact factor: 14.919

10.  Detection of Retinal Pigment Epithelium-Specific Antibody in iPSC-Derived Retinal Pigment Epithelium Transplantation Models.

Authors:  Sunao Sugita; Kenichi Makabe; Shota Fujii; Yuko Iwasaki; Hiroyuki Kamao; Takashi Shiina; Kazumasa Ogasawara; Masayo Takahashi
Journal:  Stem Cell Reports       Date:  2017-11-05       Impact factor: 7.765

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