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1H, 13C and 15N backbone resonance assignments of hepatocyte nuclear factor-1-beta (HNF1ß) POUS and POUHD.
Hokazono, Sayaka; Imagawa, Eri; Hirano, Daishi; Ikegami, Takahisa; Oishi, Kimihiko; Konuma, Tsuyoshi.
Affiliation
  • Hokazono S; Graduate School of Medical Life Science, Yokohama City University, 1-7-29 Suehiro-cho, Tsurumi-ku, Yokohama, Kanagawa, Japan.
  • Imagawa E; Department of Pediatrics, The Jikei University School of Medicine, Tokyo, Japan.
  • Hirano D; Department of Pediatrics, The Jikei University School of Medicine, Tokyo, Japan.
  • Ikegami T; Graduate School of Medical Life Science, Yokohama City University, 1-7-29 Suehiro-cho, Tsurumi-ku, Yokohama, Kanagawa, Japan.
  • Oishi K; Department of Pediatrics, The Jikei University School of Medicine, Tokyo, Japan.
  • Konuma T; Graduate School of Medical Life Science, Yokohama City University, 1-7-29 Suehiro-cho, Tsurumi-ku, Yokohama, Kanagawa, Japan. konumax@yokohama-cu.ac.jp.
Biomol NMR Assign ; 18(1): 59-63, 2024 Jun.
Article in En | MEDLINE | ID: mdl-38451454
ABSTRACT
Hepatocyte nuclear factor 1ß (HNF1ß) is a transcription factor that plays a key role in the development and function of the liver, pancreas, and kidney. HNF1ß plays a key role in early vertebrate development and the morphogenesis of these organs. In humans, heterozygous mutations in the HNF1B gene can result in organ dysplasia, making it the most common cause of developmental renal diseases, including renal cysts, renal malformations, and familial hypoplastic glomerular cystic kidney disease. Pathogenic variants in the HNF1B gene are known to cause various diseases, including maturity-onset diabetes of the young and developmental renal diseases. This study presents the backbone resonance assignments of HNF1ß POUS and POUHD domains, which are highly conserved domains required for the recognition of double-stranded DNA. Our data will be useful for NMR studies to verify the altered structures and functions of mutant HNF1B proteins that can induce developmental renal diseases, including renal cysts, renal malformations, and familial hypoplastic glomerular cystic kidney disease. This study will provide the structural basis for future studies to elucidate the molecular mechanisms underlying how mutations in HNF1ß cause diseases.
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Full text: 1 Database: MEDLINE Main subject: Nuclear Magnetic Resonance, Biomolecular / Hepatocyte Nuclear Factor 1-beta Limits: Humans Language: En Journal: Biomol NMR Assign Journal subject: BIOLOGIA MOLECULAR / MEDICINA NUCLEAR Year: 2024 Type: Article Affiliation country: Japan

Full text: 1 Database: MEDLINE Main subject: Nuclear Magnetic Resonance, Biomolecular / Hepatocyte Nuclear Factor 1-beta Limits: Humans Language: En Journal: Biomol NMR Assign Journal subject: BIOLOGIA MOLECULAR / MEDICINA NUCLEAR Year: 2024 Type: Article Affiliation country: Japan