Literature DB >> 15109061

Major histocompatibility (B) complex control of responses against Rous sarcomas.

R L Taylor1.   

Abstract

The chicken major histocompatibility (B) complex (MHC) affects disease outcome significantly. One of the best characterized systems of MHC control is the response to the oncogenic retrovirus, Rous sarcoma virus (RSV). Genetic selection altered the tumor growth pattern, either regressively or progressively, with the data suggesting control by one or a few loci. Particular MHC genotypes determine RSV tumor regression or progression indicating the crucial B complex role in Rous sarcoma outcome. Analysis of inbred lines, their crosses, congenic lines, and noninbred populations has revealed the anti-RSV response of many B complex haplotypes. Tumor growth disparity among lines identical at the MHC but differing in their background genes suggested a non-MHC gene contribution to tumor fate. Genetic complementation in tumor growth has also been demonstrated for MHC and non-MHC genes. RSV tumor expansion reflects both tumor cell proliferation and viral replication generating new tumor cells. In addition, the B complex controls tumor growth induced by a subviral DNA construct encoding only the RSV v-src oncogene. Immunity to subsequent tumors and metastasis also exhibit MHC control. Genotypes that regressed either RSV or v-src DNA primary tumors had enhanced protection against subsequent homologous challenge. Regressor B genotypes had lower tumor metastasis compared with progressor types. Together, the data indicate that B complex control of RSV tumor fate is strongly defined by the response to a v-src-determined function. Differential RSV tumor outcomes among various B genotypes may include immune recognition of a tumor-specific antigen or immune system influences on viral replication.

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Year:  2004        PMID: 15109061     DOI: 10.1093/ps/83.4.638

Source DB:  PubMed          Journal:  Poult Sci        ISSN: 0032-5791            Impact factor:   3.352


  18 in total

1.  Haplotype variation, recombination, and gene conversion within the turkey MHC-B locus.

Authors:  Lee D Chaves; Gretchen M Faile; Stacy B Krueth; Julie A Hendrickson; Kent M Reed
Journal:  Immunogenetics       Date:  2010-05-12       Impact factor: 2.846

2.  Peptide motifs of the single dominantly expressed class I molecule explain the striking MHC-determined response to Rous sarcoma virus in chickens.

Authors:  Hans-Joachim Wallny; David Avila; Lawrence G Hunt; Timothy J Powell; Patricia Riegert; Jan Salomonsen; Karsten Skjødt; Olli Vainio; Francis Vilbois; Michael V Wiles; Jim Kaufman
Journal:  Proc Natl Acad Sci U S A       Date:  2006-01-23       Impact factor: 11.205

3.  Contribution of mutation, recombination, and gene conversion to chicken MHC-B haplotype diversity.

Authors:  Kazuyoshi Hosomichi; Marcia M Miller; Ronald M Goto; Yujun Wang; Shingo Suzuki; Jerzy K Kulski; Masahide Nishibori; Hidetoshi Inoko; Kei Hanzawa; Takashi Shiina
Journal:  J Immunol       Date:  2008-09-01       Impact factor: 5.422

4.  A locus-wide approach to assessing variation in the avian MHC: the B-locus of the wild turkey.

Authors:  L D Chaves; G M Faile; J A Hendrickson; K E Mock; K M Reed
Journal:  Heredity (Edinb)       Date:  2010-12-22       Impact factor: 3.821

5.  Chicken major histocompatibility complex polymorphism and its association with production traits.

Authors:  Gholamreza Nikbakht; Atefeh Esmailnejad
Journal:  Immunogenetics       Date:  2015-03-05       Impact factor: 2.846

Review 6.  Comparative study of tumorigenesis and tumor immunity in invertebrates and nonmammalian vertebrates.

Authors:  Jacques Robert
Journal:  Dev Comp Immunol       Date:  2010-06-02       Impact factor: 3.636

7.  Differentially expressed genes in a flock of Chinese local-breed chickens infected with a subgroup J avian leukosis virus using suppression subtractive hybridization.

Authors:  Guiping Zhao; Maiqing Zheng; Jilan Chen; Jie Wen; Chunmei Wu; Wenjuan Li; Libo Liu; Yuan Zhang
Journal:  Genet Mol Biol       Date:  2010-03-01       Impact factor: 1.771

8.  BG1 has a major role in MHC-linked resistance to malignant lymphoma in the chicken.

Authors:  Ronald M Goto; Yujun Wang; Robert L Taylor; Patricia S Wakenell; Kazuyoshi Hosomichi; Takashi Shiina; Craig S Blackmore; W Elwood Briles; Marcia M Miller
Journal:  Proc Natl Acad Sci U S A       Date:  2009-09-11       Impact factor: 11.205

Review 9.  Comparative and developmental study of the immune system in Xenopus.

Authors:  Jacques Robert; Yuko Ohta
Journal:  Dev Dyn       Date:  2009-06       Impact factor: 3.780

10.  The genomic architecture of resistance to Campylobacter jejuni intestinal colonisation in chickens.

Authors:  A Psifidi; M Fife; J Howell; O Matika; P M van Diemen; R Kuo; J Smith; P M Hocking; N Salmon; M A Jones; D A Hume; G Banos; M P Stevens; P Kaiser
Journal:  BMC Genomics       Date:  2016-04-18       Impact factor: 3.969

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