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Orthotopic Hind Limb Transplantation in the Mouse
Published on: February 12, 2016
Conservation of a 23-kDa human transplantation antigen in mammalian species
S R Price1, M S Nightingale, D A Bobak
1Laboratory of Cellular Metabolism, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, Maryland 20892.
Abstract:
A group of transplantation antigens, referred to as tum- antigens, were identified in mouse tumor cells that had been mutagenized to produce variant cells and were recognized by clonal cytolytic T lymphocytes (CTL). Alterations in these variant cells that were recognized by CTL resulted from point mutations in the genes of specific proteins. We have isolated human and bovine cDNA clones that encode the homologs of the mouse tum- antigen P198. This 23.6-kDa protein is highly basic with a predicted pI of 11.55. p23/P198 is highly conserved across mammalian species, with > 94% identity (97% including conservative substitutions) among the human, bovine, and mouse deduced amino acid sequences. The nucleotide sequences of both the coding and 5'- and 3'-untranslated regions from human, bovine, and mouse are also highly conserved with > 88% identity in the coding regions. Hybridization of poly(A)+ RNA from various mammalian sources with cDNA and oligonucleotides specific for the coding region identified two mRNAs of 1.2 and 0.8 kb, whereas probes specific for the 3'-untranslated region between two consensus polyadenylation signals hybridized with the 1.2-kb, but not the 0.8-kb, mRNA. The abundance of the 1.2-kb mRNA relative to that of the 0.8-kb species varied depending upon the cell type. A single predominant transcription initiation site was mapped by primer extension. These studies indicate that this highly basic 23.6-kDa protein is encoded by two major mRNA species that differ only in the length of their 3'-untranslated regions and that the mechanism that gives rise to these two mRNAs, utilization of alternative polyadenylation sites, is conserved across species.(ABSTRACT TRUNCATED AT 250 WORDS)
Insights
Tumor antigens are altered proteins recognized by T cells. Researchers identified conserved human and bovine genes for a mouse tumor antigen, revealing alternative mRNA forms generated by conserved polyadenylation mechanisms in mammals.
Area of Science:
- Immunology and Genetics
- Molecular Biology
- Cancer Research
Background:
- Tumor antigens are recognized by cytolytic T lymphocytes (CTLs) in mutagenized mouse tumor variants.
- These antigens arise from point mutations in specific protein genes.
- Identification of homologs to mouse tumor antigen P198 in human and bovine species.
Purpose of the Study:
- To isolate and characterize human and bovine cDNA clones encoding homologs of mouse tum- antigen P198.
- To investigate the conservation and expression of the p23/P198 protein and its encoding genes across mammalian species.
- To elucidate the mechanism generating different mRNA species for this protein.
Main Methods:
- Isolation of human and bovine cDNA clones.
- Sequence analysis of deduced amino acid and nucleotide sequences.
- RNA hybridization studies using cDNA and oligonucleotide probes.
- Primer extension to map transcription initiation sites.
Main Results:
- Isolated human and bovine cDNA clones encode a highly basic 23.6-kDa protein (p23/P198), conserved across mammals (>94% amino acid identity).
- Nucleotide sequences, including untranslated regions, are also highly conserved (>88% coding region identity).
- Two major mRNA species (1.2 kb and 0.8 kb) were identified, differing in 3'-untranslated region length due to alternative polyadenylation.
- The relative abundance of these mRNA species varied by cell type.
- A single transcription initiation site was identified.
Conclusions:
- The highly basic 23.6-kDa protein is encoded by two major mRNA species differing in 3'-untranslated region length.
- Alternative polyadenylation is the mechanism generating these mRNAs.
- This mechanism is conserved across mammalian species, indicating functional importance.

