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Steroid-Resistant Nephrotic Syndrome-Associated MYO1E Mutations Have Differential Effects on Myosin 1e Localization, Dynamics, and Activity.
Liu, Pei-Ju; Gunther, Laura K; Garone, Michael E; Zhang, Chunling; Perez, Diana; Bi-Karchin, Jing; Pellenz, Christopher D; Chase, Sharon E; Presti, Maria F; Plante, Eric L; Martin, Claire E; Lovric, Svjetlana; Yengo, Christopher M; Hildebrandt, Friedhelm; Krendel, Mira.
Afiliação
  • Liu PJ; Department of Cell and Developmental Biology, State University of New York Upstate Medical University, Syracuse, New York.
  • Gunther LK; Department of Cellular and Molecular Physiology, College of Medicine, Pennsylvania State University, Hershey, Pennsylvania.
  • Garone ME; Department of Cell and Developmental Biology, State University of New York Upstate Medical University, Syracuse, New York.
  • Zhang C; Department of Neuroscience and Physiology, State University of New York Upstate Medical University, Syracuse, New York.
  • Perez D; Department of Cell and Developmental Biology, State University of New York Upstate Medical University, Syracuse, New York.
  • Bi-Karchin J; Department of Cell and Developmental Biology, State University of New York Upstate Medical University, Syracuse, New York.
  • Pellenz CD; Department of Cell and Developmental Biology, State University of New York Upstate Medical University, Syracuse, New York.
  • Chase SE; Department of Cell and Developmental Biology, State University of New York Upstate Medical University, Syracuse, New York.
  • Presti MF; Department of Cell and Developmental Biology, State University of New York Upstate Medical University, Syracuse, New York.
  • Plante EL; Department of Cell and Developmental Biology, State University of New York Upstate Medical University, Syracuse, New York.
  • Martin CE; Department of Molecular and Cellular Biology, University of Guelph, Guelph, Ontario, Canada.
  • Lovric S; Lunenfeld-Tanenbaum Research Institute, Mount Sinai Hospital, Sinai Health System, Toronto, Ontario, Canada.
  • Yengo CM; Divison of Nephrology, Department of Pediatrics, Boston Children's Hospital, Harvard Medical School, Boston, Massachusetts.
  • Hildebrandt F; Department of Cellular and Molecular Physiology, College of Medicine, Pennsylvania State University, Hershey, Pennsylvania.
  • Krendel M; Divison of Nephrology, Department of Pediatrics, Boston Children's Hospital, Harvard Medical School, Boston, Massachusetts.
J Am Soc Nephrol ; 33(11): 1989-2007, 2022 11.
Article em En | MEDLINE | ID: mdl-36316095
BACKGROUND: Myo1e is a nonmuscle motor protein enriched in podocytes. Mutations in MYO1E are associated with steroid-resistant nephrotic syndrome (SRNS). Most of the MYO1E variants identified by genomic sequencing have not been functionally characterized. Here, we set out to analyze two mutations in the Myo1e motor domain, T119I and D388H, which were selected on the basis of protein sequence conservation. METHODS: EGFP-tagged human Myo1e constructs were delivered into the Myo1e-KO mouse podocyte-derived cells via adenoviral infection to analyze Myo1e protein stability, Myo1e localization, and clathrin-dependent endocytosis, which is known to involve Myo1e activity. Furthermore, truncated Myo1e constructs were expressed using the baculovirus expression system and used to measure Myo1e ATPase and motor activity in vitro. RESULTS: Both mutants were expressed as full-length proteins in the Myo1e-KO cells. However, unlike wild-type (WT) Myo1e, the T119I variant was not enriched at the cell junctions or clathrin-coated vesicles (CCVs). In contrast, D388H variant localization was similar to that of WT. The rate of dissociation of the D388H variant from cell-cell junctions and CCVs was decreased, suggesting this mutation affects Myo1e interactions with binding partners. ATPase activity and ability to translocate actin filaments were drastically reduced for the D388H mutant, supporting findings from cell-based experiments. CONCLUSIONS: T119I and D388H mutations are deleterious to Myo1e functions. The experimental approaches used in this study can be applied to future characterization of novel MYO1E variants associated with SRNS.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Miosina Tipo I / Síndrome Nefrótica Tipo de estudo: Prognostic_studies / Risk_factors_studies Limite: Animals / Humans Idioma: En Revista: J Am Soc Nephrol Assunto da revista: NEFROLOGIA Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Miosina Tipo I / Síndrome Nefrótica Tipo de estudo: Prognostic_studies / Risk_factors_studies Limite: Animals / Humans Idioma: En Revista: J Am Soc Nephrol Assunto da revista: NEFROLOGIA Ano de publicação: 2022 Tipo de documento: Article