Literature DB >> 16133451

Chicken CD1 genes are located in the MHC: CD1 and endothelial protein C receptor genes constitute a distinct subfamily of class-I-like genes that predates the emergence of mammals.

Takako Maruoka1, Hideyuki Tanabe, Marin Chiba, Masanori Kasahara.   

Abstract

Mammals have several major histocompatibility complex (MHC) class-I-like genes. Although some of them are assumed to have originated before the emergence of mammals, the origin of class-I-like genes is poorly understood. We analyzed here the recently released chicken draft genome sequence and identified two families of class-I-like genes: CD1 and PROCR (the gene for the endothelial protein C receptor). Chickens have two CD1 genes, designated CD1.1 and CD1.2, located in tandem approximately 840 bp apart from each other. Chicken CD1.1 and CD1.2 are neither group 1- nor group 2-like, indicating that the two groups of CD1 emerged in a mammalian lineage. Although the database provides no information as to their chromosomal localization, we found that chicken CD1 genes are located adjacent to the previously characterized MHC B system contig on chromosome 16. We confirmed the linkage of CD1 to the B system by dual-color fluorescence in situ hybridization. Chickens have a single copy of PROCR. Among known class-I-like genes, PROCR is most closely related to CD1, indicating that CD1 and PROCR constitute a distinct subfamily of class-I-like genes that predates the emergence of mammals.

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Year:  2005        PMID: 16133451     DOI: 10.1007/s00251-005-0016-y

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


  59 in total

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Journal:  Nature       Date:  2000-08-17       Impact factor: 49.962

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Authors:  I V Sandoval; O Bakke
Journal:  Trends Cell Biol       Date:  1994-08       Impact factor: 20.808

Review 3.  Evolutionary constraints on CD1 structure: insights from comparative genomic analysis.

Authors:  Christopher C Dascher; Michael B Brenner
Journal:  Trends Immunol       Date:  2003-08       Impact factor: 16.687

Review 4.  Gene organisation determines evolution of function in the chicken MHC.

Authors:  J Kaufman; J Jacob; I Shaw; B Walker; S Milne; S Beck; J Salomonsen
Journal:  Immunol Rev       Date:  1999-02       Impact factor: 12.988

5.  Two classes of CD1 genes.

Authors:  F Calabi; J M Jarvis; L Martin; C Milstein
Journal:  Eur J Immunol       Date:  1989-02       Impact factor: 5.532

6.  An Fc receptor structurally related to MHC class I antigens.

Authors:  N E Simister; K E Mostov
Journal:  Nature       Date:  1989-01-12       Impact factor: 49.962

7.  The rabbit CD1 and the evolutionary conservation of the CD1 gene family.

Authors:  F Calabi; K T Belt; C Y Yu; A Bradbury; W J Mandy; C Milstein
Journal:  Immunogenetics       Date:  1989       Impact factor: 2.846

8.  Conservation of a CD1 multigene family in the guinea pig.

Authors:  C C Dascher; K Hiromatsu; J W Naylor; P P Brauer; K A Brown; J R Storey; S M Behar; E S Kawasaki; S A Porcelli; M B Brenner; K P LeClair
Journal:  J Immunol       Date:  1999-11-15       Impact factor: 5.422

9.  Identification of the Tapasin gene in the chicken major histocompatibility complex.

Authors:  B Frangoulis; I Park; F Guillemot; V Séverac; C Auffray; R Zoorob
Journal:  Immunogenetics       Date:  1999-04       Impact factor: 2.846

10.  Group 1 CD1 genes in rabbit.

Authors:  S M Hayes; K L Knight
Journal:  J Immunol       Date:  2001-01-01       Impact factor: 5.422

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  19 in total

1.  Exceptionally high conservation of the MHC class I-related gene, MR1, among mammals.

Authors:  Kentaro Tsukamoto; Janine E Deakin; Jennifer A Marshall Graves; Keiichiro Hashimoto
Journal:  Immunogenetics       Date:  2012-11-16       Impact factor: 2.846

2.  Conservation of sequence motifs suggests that the nonclassical MHC class I lineages CD1/PROCR and UT were established before the emergence of tetrapod species.

Authors:  Johannes M Dijkstra; Takuya Yamaguchi; Unni Grimholt
Journal:  Immunogenetics       Date:  2017-12-21       Impact factor: 2.846

3.  Evolution of mammalian CD1: marsupial CD1 is not orthologous to the eutherian isoforms and is a pseudogene in the opossum Monodelphis domestica.

Authors:  Michelle L Baker; Robert D Miller
Journal:  Immunology       Date:  2007-01-18       Impact factor: 7.397

4.  Inferring the "Primordial Immune Complex": Origins of MHC Class I and Antigen Receptors Revealed by Comparative Genomics.

Authors:  Yuko Ohta; Masanori Kasahara; Timothy D O'Connor; Martin F Flajnik
Journal:  J Immunol       Date:  2019-09-06       Impact factor: 5.422

Review 5.  Immunogenetics of the NKG2D ligand gene family.

Authors:  Masanori Kasahara; Shigeru Yoshida
Journal:  Immunogenetics       Date:  2012-07-29       Impact factor: 2.846

6.  Inhibition of CD1 antigen presentation by human cytomegalovirus.

Authors:  Martin J Raftery; Manuel Hitzler; Florian Winau; Thomas Giese; Bodo Plachter; Stefan H E Kaufmann; Günther Schönrich
Journal:  J Virol       Date:  2008-02-20       Impact factor: 5.103

7.  Characterization of the opossum immune genome provides insights into the evolution of the mammalian immune system.

Authors:  Katherine Belov; Claire E Sanderson; Janine E Deakin; Emily S W Wong; Daniel Assange; Kaighin A McColl; Alex Gout; Bernard de Bono; Alexander D Barrow; Terence P Speed; John Trowsdale; Anthony T Papenfuss
Journal:  Genome Res       Date:  2007-05-10       Impact factor: 9.043

8.  The equine CD1 gene family is the largest and most diverse yet identified.

Authors:  Robson G Dossa; Debra C Alperin; Melissa T Hines; Stephen A Hines
Journal:  Immunogenetics       Date:  2013-11-07       Impact factor: 2.846

Review 9.  The CD1 family: serving lipid antigens to T cells since the Mesozoic era.

Authors:  Dirk M Zajonc
Journal:  Immunogenetics       Date:  2016-07-02       Impact factor: 2.846

10.  Functional CD1d and/or NKT cell invariant chain transcript in horse, pig, African elephant and guinea pig, but not in ruminants.

Authors:  Frank A Looringh van Beeck; Peter Reinink; Roel Hermsen; Dirk M Zajonc; Marielle J Laven; Axel Fun; Milana Troskie; Nico J Schoemaker; Darshana Morar; Johannes A Lenstra; Lonneke Vervelde; Victor P M G Rutten; Willem van Eden; Ildiko Van Rhijn
Journal:  Mol Immunol       Date:  2009-01-30       Impact factor: 4.407

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