Bidirectional imprinting of a single gene: GNAS1 encodes maternally, paternally, and biallelically derived proteins
Bidirectional imprinting of a single gene: GNAS1 encodes maternally, paternally, and biallelically derived proteins
The GNAS1 gene encodes the α subunit of the guanine nucleotide-binding protein G s , which couples signaling through peptide hormone receptors to cAMP generation. GNAS1 mutations underlie the hormone resistance syndrome pseudohypoparathyroidism type Ia (PHP-Ia), so the maternal inheritance displayed by PHP-Ia has raised suspicions that GNAS1 is imprinted. Despite this suggestion, in most tissues G s α is biallelically encoded. In contrast, the large G protein XLαs, also encoded by GNAS1 , is paternally derived. Because the inheritance of PHP-Ia predicts the existence of maternally, rather than paternally, expressed transcripts, we have investigated the allelic origin of other mRNAs derived from GNAS1 . We find this gene to be remarkable in the complexity of its allele-specific regulation. Two upstream promoters, each associated with a large coding exon, lie only 11 kb apart, yet show opposite patterns of allele-specific methylation and monoallelic transcription. The more 5′ of these exons encodes the neuroendocrine secretory protein NESP55, which is expressed exclusively from the maternal allele. The NESP55 exon is 11 kb 5′ to the paternally expressed XLαs exon. The transcripts from these two promoters both splice onto GNAS1 exon 2, yet share no coding sequences. Despite their structural unrelatedness, the encoded proteins, of opposite allelic origin, both have been implicated in regulated secretion in neuroendocrine tissues. Remarkably, maternally (NESP55), paternally (XLαs), and biallelically (G s α) derived proteins all are produced by different patterns of promoter use and alternative splicing of GNAS1 , a gene showing simultaneous imprinting in both the paternal and maternal directions.
- Imperial College Healthcare NHS Trust United Kingdom
- Johns Hopkins Medicine United States
- Johns Hopkins Hospital United States
- University of Edinburgh United Kingdom
- Western General Hospital United Kingdom
Male, Base Sequence, Molecular Sequence Data, DNA, Exons, DNA Methylation, Eye, Kidney, Genomic Imprinting, Mice, Fetus, GTP-Binding Protein alpha Subunits, Gs, Animals, Humans, Cattle, Female, Amino Acid Sequence, Cloning, Molecular, Muscle, Skeletal, Alleles
Male, Base Sequence, Molecular Sequence Data, DNA, Exons, DNA Methylation, Eye, Kidney, Genomic Imprinting, Mice, Fetus, GTP-Binding Protein alpha Subunits, Gs, Animals, Humans, Cattle, Female, Amino Acid Sequence, Cloning, Molecular, Muscle, Skeletal, Alleles
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