[INHIBITORS OF MAP-KINASE PATHWAY U0126 AND PD98059 DIFFERENTLY AFFECT ORGANIZATION OF TUBULIN CYTOSKELETON AFTER

Tsitologiia
|September 10, 2015
PubMed

Insights

The study investigated how Epidermal Growth Factor (EGF)-stimulated MAP-kinase ERK1/2 affects the microtubule (MT) system during EGF receptor endocytosis. Results show that U0126 and PD98059 inhibitors differentially impact MT organization and EGF receptor endocytosis, highlighting distinct roles of ERK1/2 pathway components.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Biochemistry

Background:

  • The Epidermal Growth Factor (EGF) signaling pathway plays a crucial role in cellular processes.
  • Mitogen-activated protein kinase (MAPK) pathways, including ERK1/2, are involved in regulating the cytoskeleton.
  • Understanding the interplay between EGF signaling, MAP-kinases, and the microtubule (MT) system is essential for cell biology.

Purpose of the Study:

  • To investigate the role of EGF-stimulated MAP-kinase ERK1/2 in regulating the microtubule (MT) cytoskeleton.
  • To examine the effects of two ERK1/2 inhibitors, U0126 and PD98059, on tubulin organization during EGF receptor endocytosis in HeLa cells.
  • To compare the differential impacts of U0126 and PD98059 on MT dynamics, endocytosis, and EGF receptor trafficking.

Main Methods:

  • Utilized HeLa cells to study EGF receptor endocytosis.
  • Employed U0126 and PD98059 as ERK1/2 inhibitors.
  • Analyzed microtubule (MT) organization, tubulin acetylation, and EGF receptor colocalization with endosomal markers (EEA1).
  • Quantitatively assessed endosome formation, localization, and clustering.
  • Monitored the phosphorylation status of ERK1 and ERK2.

Main Results:

  • U0126 induced significant MT depolymerization and altered EGF receptor endocytosis dynamics, leading to increased peripheral endosomes.
  • PD98059 caused minor MT depolymerization, stabilized MTs near the plasma membrane, and resulted in fewer, slowly clustering endosomes.
  • Both inhibitors reduced EGF receptor colocalization with EEA1, indicating delayed endosome maturation.
  • U0126 completely inhibited phospho-ERK1/2, while PD98059 caused transient ERK activation, revealing differential effects on MAP-kinase activity.
  • The inhibitors exhibited distinct effects on MT organization and endocytosis, despite both targeting ERK1/2.

Conclusions:

  • EGF-stimulated MAP-kinase pathways are involved in regulating the cytoskeleton.
  • U0126 and PD98059 are not equivalent inhibitors; they have differential effects on MAP-kinase activity, MT organization, and EGF receptor endocytosis.
  • The study highlights the complex interplay between signaling pathways and cytoskeletal dynamics in cellular processes like endocytosis.

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