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Autophagy initiation triggers p150Glued-AP-2ß interaction on the lysosomes and facilitates their transport.
Tempes, Aleksandra; Bogusz, Karolina; Brzozowska, Agnieszka; Weslawski, Jan; Macias, Matylda; Tkaczyk, Oliver; Orzol, Katarzyna; Lew, Aleksandra; Calka-Kresa, Malgorzata; Bernas, Tytus; Szczepankiewicz, Andrzej A; Mlostek, Magdalena; Kumari, Shiwani; Liszewska, Ewa; Machnicka, Katarzyna; Bakun, Magdalena; Rubel, Tymon; Malik, Anna R; Jaworski, Jacek.
Afiliación
  • Tempes A; Laboratory of Molecular and Cellular Neurobiology, International Institute of Molecular and Cell Biology, Ks. Trojdena St. 4, 02-109, Warsaw, Poland.
  • Bogusz K; Laboratory of Molecular and Cellular Neurobiology, International Institute of Molecular and Cell Biology, Ks. Trojdena St. 4, 02-109, Warsaw, Poland.
  • Brzozowska A; Laboratory of Molecular and Cellular Neurobiology, International Institute of Molecular and Cell Biology, Ks. Trojdena St. 4, 02-109, Warsaw, Poland.
  • Weslawski J; Laboratory of Molecular and Cellular Neurobiology, International Institute of Molecular and Cell Biology, Ks. Trojdena St. 4, 02-109, Warsaw, Poland.
  • Macias M; Microscopy and Flow Cytometry Core Facility, International Institute of Molecular and Cell Biology, Warsaw, Poland.
  • Tkaczyk O; Laboratory of Molecular and Cellular Neurobiology, International Institute of Molecular and Cell Biology, Ks. Trojdena St. 4, 02-109, Warsaw, Poland.
  • Orzol K; Laboratory of Molecular and Cellular Neurobiology, International Institute of Molecular and Cell Biology, Ks. Trojdena St. 4, 02-109, Warsaw, Poland.
  • Lew A; Laboratory of Molecular and Cellular Neurobiology, International Institute of Molecular and Cell Biology, Ks. Trojdena St. 4, 02-109, Warsaw, Poland.
  • Calka-Kresa M; Nencki Institute of Experimental Biology, Polish Academy of Sciences, Warsaw, Poland.
  • Bernas T; Nencki Institute of Experimental Biology, Polish Academy of Sciences, Warsaw, Poland.
  • Szczepankiewicz AA; Microscopy Facility, Department of Anatomy and Neurology, Virginia Commonwealth University School of Medicine, Richmond, VA, USA.
  • Mlostek M; Nencki Institute of Experimental Biology, Polish Academy of Sciences, Warsaw, Poland.
  • Kumari S; Laboratory of Molecular and Cellular Neurobiology, International Institute of Molecular and Cell Biology, Ks. Trojdena St. 4, 02-109, Warsaw, Poland.
  • Liszewska E; Laboratory of Molecular and Cellular Neurobiology, International Institute of Molecular and Cell Biology, Ks. Trojdena St. 4, 02-109, Warsaw, Poland.
  • Machnicka K; Laboratory of Molecular and Cellular Neurobiology, International Institute of Molecular and Cell Biology, Ks. Trojdena St. 4, 02-109, Warsaw, Poland.
  • Bakun M; Laboratory of Molecular and Cellular Neurobiology, International Institute of Molecular and Cell Biology, Ks. Trojdena St. 4, 02-109, Warsaw, Poland.
  • Rubel T; Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Warsaw, Poland.
  • Malik AR; Institute of Radioelectronics and Multimedia Technology, Warsaw University of Technology, Warsaw, Poland.
  • Jaworski J; Laboratory of Molecular and Cellular Neurobiology, International Institute of Molecular and Cell Biology, Ks. Trojdena St. 4, 02-109, Warsaw, Poland. ar.malik@uw.edu.pl.
Cell Mol Life Sci ; 81(1): 218, 2024 May 17.
Article en En | MEDLINE | ID: mdl-38758395
ABSTRACT
The endocytic adaptor protein 2 (AP-2) complex binds dynactin as part of its noncanonical function, which is necessary for dynein-driven autophagosome transport along microtubules in neuronal axons. The absence of this AP-2-dependent transport causes neuronal morphology simplification and neurodegeneration. The mechanisms that lead to formation of the AP-2-dynactin complex have not been studied to date. However, the inhibition of mammalian/mechanistic target of rapamycin complex 1 (mTORC1) enhances the transport of newly formed autophagosomes by influencing the biogenesis and protein interactions of Rab-interacting lysosomal protein (RILP), another dynein cargo adaptor. We tested effects of mTORC1 inhibition on interactions between the AP-2 and dynactin complexes, with a focus on their two essential subunits, AP-2ß and p150Glued. We found that the mTORC1 inhibitor rapamycin enhanced p150Glued-AP-2ß complex formation in both neurons and non-neuronal cells. Additional analysis revealed that the p150Glued-AP-2ß interaction was indirect and required integrity of the dynactin complex. In non-neuronal cells rapamycin-driven enhancement of the p150Glued-AP-2ß interaction also required the presence of cytoplasmic linker protein 170 (CLIP-170), the activation of autophagy, and an undisturbed endolysosomal system. The rapamycin-dependent p150Glued-AP-2ß interaction occurred on lysosomal-associated membrane protein 1 (Lamp-1)-positive organelles but without the need for autolysosome formation. Rapamycin treatment also increased the acidification and number of acidic organelles and increased speed of the long-distance retrograde movement of Lamp-1-positive organelles. Altogether, our results indicate that autophagy regulates the p150Glued-AP-2ß interaction, possibly to coordinate sufficient motor-adaptor complex availability for effective lysosome transport.
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Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Autofagia / Complejo Dinactina / Lisosomas Límite: Animals / Humans Idioma: En Revista: Cell Mol Life Sci Asunto de la revista: BIOLOGIA MOLECULAR Año: 2024 Tipo del documento: Article País de afiliación: Polonia

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Autofagia / Complejo Dinactina / Lisosomas Límite: Animals / Humans Idioma: En Revista: Cell Mol Life Sci Asunto de la revista: BIOLOGIA MOLECULAR Año: 2024 Tipo del documento: Article País de afiliación: Polonia