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Sporadic imprinting defects in Prader-Willi syndrome and Angelman syndrome: implications for imprint-switch models, genetic counseling, and prenatal diagnosis.
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The gene responsible for pseudohypoparathyroidism type Ib is paternally imprinted and maps in four unrelated kindreds to chromosome 20q13.3.
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Bidirectional imprinting of a single gene: GNAS1 encodes maternally, paternally, and biallelically derived proteins.
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Loss of imprinting of a paternally expressed transcript, with antisense orientation to KVLQT1, occurs frequently in Beckwith-Wiedemann syndrome and is independent of insulin-like growth factor II imprinting.
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DNA methylation analysis with respect to prenatal diagnosis of the Angelman and Prader-Willi syndromes and imprinting.
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Variable imprinting of the heterotrimeric G protein G(s) alpha-subunit within different segments of the nephron.
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An imprinted antisense transcript at the human GNAS1 locus.
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PCR amplification in bisulfite methylcytosine mapping in the GC-rich promoter region of amyloid precursor protein gene in autopsy human brain.
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Identification of a methylation imprint mark within the mouse Gnas locus.
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Complex patterns of inheritance of an imprinted murine transgene suggest incomplete germline erasure.
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A GNAS1 imprinting defect in pseudohypoparathyroidism type IB.
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Imprinting centre deletions in two PWS families: implications for diagnostic testing and genetic counseling.
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Genomic imprinting: parental influence on the genome.
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Imprinting of the G(s)alpha gene GNAS1 in the pathogenesis of acromegaly.
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Paternal uniparental isodisomy of chromosome 20q--and the resulting changes in GNAS1 methylation--as a plausible cause of pseudohypoparathyroidism.
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Positional dissociation between the genetic mutation responsible for pseudohypoparathyroidism type Ib and the associated methylation defect at exon A/B: evidence for a long-range regulatory element within the imprinted GNAS1 locus.
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Endocrine manifestations of stimulatory G protein alpha-subunit mutations and the role of genomic imprinting.
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Galphas transcripts are biallelically expressed in the human kidney cortex: implications for pseudohypoparathyroidism type 1b.
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Paternal imprinting of Galpha(s) in the human thyroid as the basis of TSH resistance in pseudohypoparathyroidism type 1a.
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The gsalpha gene: predominant maternal origin of transcription in human thyroid gland and gonads.
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Pseudohypoparathyroidism type Ib with disturbed imprinting in the GNAS1 cluster and Gsalpha deficiency in platelets.
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The pseudohypoparathyroidism type lb locus is linked to a region including GNAS1 at 20q13.3.
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Influence of maternal phenotype on metabolic differentiation of agouti locus mutants in the mouse.
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Defect of receptor-cyclase coupling protein in psudohypoparathyroidism.
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Deficient activity of guanine nucleotide regulatory protein in erythrocytes from patients with pseudohypoparathyroidism.
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Deficient activity of receptor-cyclase coupling protein in platelets of patients with pseudohypoparathyroidism.
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Deficient activity of receptor-cyclase coupling protein is transformed lymphoblasts of patients with pseudohypoparathyroidism, type I.
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Deficient adenylate cyclase regulatory protein in renal membranes from a patient with pseudohypoparathyroidism.
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Resistance to multiple hormones in patients with pseudohypoparathyroidism. Association with deficient activity of guanine nucleotide regulatory protein.
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Deficient guanine nucleotide regulatory unit activity in cultured fibroblast membranes from patients with pseudohypoparathyroidism type I. a cause of impaired synthesis of 3',5'-cyclic AMP by intact and broken cells.
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Activity of the stimulatory guanine nucleotide-binding protein is reduced in erythrocytes from patients with pseudohypoparathyroidism and pseudopseudohypoparathyroidism: biochemical, endocrine, and genetic analysis of Albright's hereditary osteodystrophy in six kindreds.
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Differential expression of novel Gs alpha signal transduction protein cDNA species.
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Defective stimulation of adipocyte adenylate cyclase, blunted lipolysis, and obesity in pseudohypoparathyroidism 1a.
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Neomorphic agouti mutations in obese yellow mice.
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Parental origin of transcription from the human GNAS1 gene.
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Imprinting mutations on human chromosome 15.
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The human GNAS1 gene is imprinted and encodes distinct paternally and biallelically expressed G proteins.
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