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Tytuł pozycji:

Genotype-Structure-Phenotype Correlations of Disease-Associated IGF1R Variants and Similarities to Those of INSR Variants.

Tytuł:
Genotype-Structure-Phenotype Correlations of Disease-Associated IGF1R Variants and Similarities to Those of INSR Variants.
Autorzy:
Hosoe J; Department of Diabetes and Metabolic Diseases, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.
Kawashima-Sonoyama Y; Division of Pediatrics and Perinatology, Faculty of Medicine, Tottori University, Yonago, Japan.
Miya F; Department of Medical Science Mathematics, Medical Research Institute, Tokyo Medical and Dental University, Tokyo, Japan.; Laboratory for Medical Science Mathematics, RIKEN Center for Integrative Medical Sciences, Yokohama, Japan.; CREST, Japan Science and Technology Agency, Tokyo.
Kadowaki H; Department of Pediatrics, Sanno Hospital, Tokyo, Japan.
Suzuki K; Department of Diabetes and Metabolic Diseases, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.; Department of Statistical Genetics, Osaka University Graduate School of Medicine, Osaka, Japan.
Kato T; Department of Diabetes and Metabolic Diseases, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.
Matsuzawa F; Tokyo R&D Center, Altif Laboratories, Inc., Tokyo, Japan.
Aikawa SI; Tokyo R&D Center, Altif Laboratories, Inc., Tokyo, Japan.
Okada Y; Department of Statistical Genetics, Osaka University Graduate School of Medicine, Osaka, Japan.
Tsunoda T; Department of Medical Science Mathematics, Medical Research Institute, Tokyo Medical and Dental University, Tokyo, Japan.; Laboratory for Medical Science Mathematics, RIKEN Center for Integrative Medical Sciences, Yokohama, Japan.; CREST, Japan Science and Technology Agency, Tokyo.; Laboratory for Medical Science Mathematics, Department of Biological Sciences, Graduate School of Science, The University of Tokyo, Tokyo, Japan.
Hanaki K; School of Health Science, Faculty of Medicine, Tottori University, Yonago, Japan.
Kanzaki S; Asahigawaso Rehabilitation and Medical Center, Okayama, Japan.
Shojima N; Department of Diabetes and Metabolic Diseases, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan .
Yamauchi T; Department of Diabetes and Metabolic Diseases, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.
Kadowaki T; Department of Diabetes and Metabolic Diseases, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan .; Toranomon Hospital, Tokyo, Japan.
Źródło:
Diabetes [Diabetes] 2021 Aug; Vol. 70 (8), pp. 1874-1884. Date of Electronic Publication: 2021 Jun 01.
Typ publikacji:
Journal Article; Research Support, Non-U.S. Gov't
Język:
English
Imprint Name(s):
Publication: Alexandria, VA : American Diabetes Association
Original Publication: [New York, American Diabetes Association]
MeSH Terms:
Antigens, CD/*genetics
Body Height/*genetics
Growth Disorders/*genetics
Receptor, IGF Type 1/*genetics
Receptor, Insulin/*genetics
Animals ; Antigens, CD/metabolism ; CHO Cells ; Cricetinae ; Cricetulus ; Genetic Association Studies ; Humans ; Insulin Resistance/genetics ; Mutation, Missense ; Phenotype ; Receptor, IGF Type 1/metabolism ; Receptor, Insulin/metabolism ; Retrospective Studies
Molecular Sequence:
figshare 10.2337/figshare.14579415
Substance Nomenclature:
0 (Antigens, CD)
0 (IGF1R protein, human)
EC 2.7.10.1 (INSR protein, human)
EC 2.7.10.1 (Receptor, IGF Type 1)
EC 2.7.10.1 (Receptor, Insulin)
Entry Date(s):
Date Created: 20210602 Date Completed: 20210921 Latest Revision: 20210921
Update Code:
20240104
DOI:
10.2337/db20-1145
PMID:
34074726
Czasopismo naukowe
We previously reported genotype-phenotype correlations in 12 missense variants causing severe insulin resistance, located in the second and third fibronectin type III (FnIII) domains of the insulin receptor (INSR), containing the α-β cleavage and part of insulin-binding sites. This study aimed to identify genotype-phenotype correlations in FnIII domain variants of IGF1R, a structurally related homolog of INSR, which may be associated with growth retardation, using the recently reported crystal structures of IGF1R. A structural bioinformatics analysis of five previously reported disease-associated heterozygous missense variants and a likely benign variant in the FnIII domains of IGF1R predicted that the disease-associated variants would severely impair the hydrophobic core formation and stability of the FnIII domains or affect the α-β cleavage site, while the likely benign variant would not affect the folding of the domains. A functional analysis of these variants in CHO cells showed impaired receptor processing and autophosphorylation in cells expressing the disease-associated variants but not in those expressing the wild-type form or the likely benign variant. These results demonstrated genotype-phenotype correlations in the FnIII domain variants of IGF1R , which are presumably consistent with those of INSR and would help in the early diagnosis of patients with disease-associated IGF1R variants.
(© 2021 by the American Diabetes Association.)

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