Early Endosomal GTPase Rab5 (Ras-Related Protein in Brain 5) Regulates GPIbβ (Glycoprotein Ib Subunit β) Trafficking

Ivana Bertović1, Roberta Kurelić1, Hana Mahmutefendić Lučin2

  • 1Department of Biotechnology (I.B., R.K., A.J.B), University of Rijeka, Croatia.

Abstract

Insights

Ras-related protein in brain 5 (Rab5) GTPase is crucial for megakaryocyte membrane formation and proplatelet production. Active Rab5 enhances membrane incorporation and proplatelet formation, while inactive Rab5 inhibits these processes.

Area of Science:

  • Cell Biology
  • Hematology
  • Molecular Biology

Background:

  • Megakaryocyte maturation involves extensive membrane rearrangements for proplatelet formation, a process not fully understood.
  • The role of GTPase Rab5 in regulating endocytosis and membrane trafficking in megakaryocytes remains unclear.

Purpose of the Study:

  • To investigate the function of Rab5 GTPase in megakaryocyte membrane dynamics and proplatelet formation.
  • To elucidate the role of Rab5 in receptor trafficking and membrane biogenesis during thrombopoiesis.

Main Methods:

  • Expression of green fluorescent protein (GFP)-coupled Rab5 wild type and its mutants (Q79L active, N133L inactive) in primary murine fetal liver-derived megakaryocytes.
  • Analysis of endosomal morphology, transferrin uptake, glycoprotein Ib subunit beta (GPIbβ) trafficking, and membrane incorporation using PKH26 dye.
  • Assessment of proplatelet production and late endosome/lysosome content.

Main Results:

  • Active Rab5 (Q79L) induced enlarged early endosomes and increased membrane content, promoting proplatelet production.
  • Inactive Rab5 (N133L) caused endosomal fragmentation, impaired transferrin uptake, retained GPIbβ at the plasma membrane, and inhibited proplatelet formation.
  • Rab5 activity mediated GPIbβ trafficking, with accumulation in enlarged endosomes in the presence of active Rab5.
  • GPIbβ localization to enlarged endosomes was dependent on phosphatidylinositol 3-monophosphate.

Conclusions:

  • Rab5-dependent endocytosis is essential for regulating megakaryocyte receptor trafficking and membrane biogenesis.
  • Active Rab5 promotes membrane incorporation and proplatelet formation, critical for effective thrombopoiesis.
  • Dysregulation of Rab5 impairs proplatelet production and endosomal maturation.

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