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MTMR4, a phosphoinositide-specific 3'-phosphatase, regulates TFEB activity and the endocytic and autophagic pathways.
Pham, Hoa Q; Yoshioka, Kazuaki; Mohri, Hiromi; Nakata, Hiroki; Aki, Sho; Ishimaru, Kazuhiro; Takuwa, Noriko; Takuwa, Yoh.
Afiliación
  • Pham HQ; Department of Physiology, Kanazawa University School of Medicine, Kanazawa, Japan.
  • Yoshioka K; Department of Physiology, Kanazawa University School of Medicine, Kanazawa, Japan.
  • Mohri H; Department of Physiology, Kanazawa University School of Medicine, Kanazawa, Japan.
  • Nakata H; Department of Histology and Cell Biology, Kanazawa University School of Medicine, Kanazawa, Japan.
  • Aki S; Department of Physiology, Kanazawa University School of Medicine, Kanazawa, Japan.
  • Ishimaru K; Department of Physiology, Kanazawa University School of Medicine, Kanazawa, Japan.
  • Takuwa N; Department of Physiology, Kanazawa University School of Medicine, Kanazawa, Japan.
  • Takuwa Y; Department of Health and Medical Science, Ishikawa Prefectural Nursing University, Kahoku, Japan.
Genes Cells ; 2018 Jul 02.
Article en En | MEDLINE | ID: mdl-29962048
ABSTRACT
Phosphatidylinositol 3-phosphate (PI(3)P) is the predominant phosphoinositide species in early endosomes and autophagosomes, in which PI(3)P dictates traffic of these organelles. Phosphoinositide levels are tightly regulated by lipid-kinases and -phosphatases; however, a phosphatase that converts PI(3)P back to phosphatidylinositol in the endosomal and autophagosomal compartments is not fully understood. We investigated the subcellular distribution and functions of myotubularin-related protein-4 (MTMR4), which is distinct among other MTMRs in that it possesses a PI(3)P-binding FYVE domain, in lung alveolar epithelium-derived A549 cells. MTMR4 was localized mainly in late endosomes and autophagosomes. MTMR4 knockdown markedly suppressed the motility, fusion, and fission of PI(3)P-enriched structures, resulting in decreases in late endosomes, autophagosomes, and lysosomes, and enlargement of PI(3)P-enriched early and late endosomes. In amino acid- and serum-starved cells, MTMR4 knockdown decreased both autophagosomes and autolysosomes and markedly increased PI(3)P-containing autophagosomes and late endosomes, suggesting that the fusion with lysosomes of autophagosomes and late endosomes might be impaired. Notably, MTMR4 knockdown inhibited the nuclear translocation of starvation stress responsive transcription factor-EB (TFEB) with reduced expression of lysosome-related genes in starved cells. These findings indicate that MTMR4 is essential for the integrity of endocytic and autophagic pathways.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Genes Cells Asunto de la revista: BIOLOGIA MOLECULAR Año: 2018 Tipo del documento: Article País de afiliación: Japón

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Genes Cells Asunto de la revista: BIOLOGIA MOLECULAR Año: 2018 Tipo del documento: Article País de afiliación: Japón