Literature DB >> 2300553

A nonsense mutation causing decreased levels of insulin receptor mRNA: detection by a simplified technique for direct sequencing of genomic DNA amplified by the polymerase chain reaction.

T Kadowaki1, H Kadowaki, S I Taylor.   

Abstract

Mutations in the insulin receptor gene can render the cell resistant to the biological action of insulin. We have studied a patient with leprechaunism (leprechaun/Minn-1), a genetic syndrome associated with intrauterine growth retardation and extreme insulin resistance. Genomic DNA from the patient was amplified by the polymerase chain reaction catalyzed by Thermus aquaticus (Taq) DNA polymerase, and the amplified DNA was directly sequenced. A nonsense mutation was identified at codon 897 in exon 14 in the paternal allele of the patient's insulin receptor gene. Levels of insulin receptor mRNA are decreased to less than 10% of normal in Epstein-Barr virus-transformed lymphoblasts and cultured skin fibroblasts from this patient. Thus, this nonsense mutation appears to cause a decrease in the levels of insulin receptor mRNA. In addition, we have obtained indirect evidence that the patient's maternal allele of the insulin receptor gene contains a cis-acting dominant mutation that also decreases the level of mRNA, but by a different mechanism. The nucleotide sequence of the entire protein-coding domain and the sequences of the intron-exon boundaries for all 22 exons of the maternal allele were normal. Presumably, the mutation in the maternal allele maps elsewhere in the insulin receptor gene. Thus, we conclude that the patient is a compound heterozygote for two cis-acting dominant mutations in the insulin receptor gene: (i) a nonsense mutation in the paternal allele that reduces the level of insulin receptor mRNA and (ii) an as yet unidentified mutation in the maternal allele that either decreases the rate of transcription or decreases the stability of the mRNA.

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Year:  1990        PMID: 2300553      PMCID: PMC53324          DOI: 10.1073/pnas.87.2.658

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  40 in total

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4.  The syndromes of insulin resistance and acanthosis nigricans. Insulin-receptor disorders in man.

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5.  Defects in human insulin receptor gene expression.

Authors:  K Ojamaa; J A Hedo; C T Roberts; V Y Moncada; P Gorden; A Ullrich; S I Taylor
Journal:  Mol Endocrinol       Date:  1988-03

6.  Splice junction mutation in some Ashkenazi Jews with Tay-Sachs disease: evidence against a single defect within this ethnic group.

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7.  Insulin-resistant diabetes due to a point mutation that prevents insulin proreceptor processing.

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8.  Nonsense mutations in the dihydrofolate reductase gene affect RNA processing.

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9.  Two mutant alleles of the insulin receptor gene in a patient with extreme insulin resistance.

Authors:  T Kadowaki; C L Bevins; A Cama; K Ojamaa; B Marcus-Samuels; H Kadowaki; L Beitz; C McKeon; S I Taylor
Journal:  Science       Date:  1988-05-06       Impact factor: 47.728

10.  A mutation in the insulin receptor gene that impairs transport of the receptor to the plasma membrane and causes insulin-resistant diabetes.

Authors:  D Accili; C Frapier; L Mosthaf; C McKeon; S C Elbein; M A Permutt; E Ramos; E Lander; A Ullrich; S I Taylor
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  46 in total

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4.  Polymorphism in exon 4a of the human GLUT4/ muscle-fat facilitative glucose transporter gene detected by SSCP.

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6.  Recurrent nonsense mutations within the type VII collagen gene in patients with severe recessive dystrophic epidermolysis bullosa.

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Review 7.  The ferrochelatase gene structure and molecular defects associated with erythropoietic protoporphyria.

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8.  Idiopathic chronic calcifying pancreatitis with diabetes mellitus. Analysis of pancreatic stone protein gene.

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9.  Familial adrenocorticotropin unresponsiveness associated with alacrima and achalasia: biochemical and molecular studies in two siblings with clinical heterogeneity.

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Authors:  M von Lindern; M Fornerod; S van Baal; M Jaegle; T de Wit; A Buijs; G Grosveld
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