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Published on: November 8, 2024
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.
Objective:
Maturation of megakaryocytes culminates with extensive membrane rearrangements necessary for proplatelet formation. Mechanisms required for proplatelet extension and origin of membranes are still poorly understood. GTPase Rab5 (Ras-related protein in brain 5) regulates endocytic uptake and homotypic fusion of early endosomes and regulates phosphatidylinositol 3-monophosphate production important for binding of effector proteins during early-to-late endosomal/lysosomal maturation. Approach and Results: To investigate the role of Rab5 in megakaryocytes, we expressed GFP (green fluorescent protein)-coupled Rab5 wild type and its point mutants Q79L (active) and N133L (inactive) in primary murine fetal liver-derived megakaryocytes. Active Rab5 Q79L induced the formation of enlarged early endosomes, while inactive Rab5 N133L caused endosomal fragmentation. Consistently, an increased amount of transferrin internalization in Rab5 Q79L was impaired in Rab5 N133L expressing megakaryocytes, when compared with GFP or Rab5 wild type. Moreover, trafficking of GPIbβ (glycoprotein Ib subunit beta), a subunit of major megakaryocytes receptor and membrane marker, was found to be mediated by Rab5 activity. While GPIbβ was mostly present along the plasma membrane, and within cytoplasmic vesicles in Rab5 wild type megakaryocytes, it accumulated in the majority of Rab5 Q79L enlarged endosomes. Conversely, Rab5 N133L caused mostly GPIbβ plasma membrane retention. Furthermore, Rab5 Q79L expression increased incorporation of the membrane dye (PKH26), indicating higher membrane content. Finally, while Rab5 Q79L increased proplatelet production, inactive Rab5 N133L strongly inhibited it and was coupled with a decrease in late endosomes/lysosomes. Localization of GPIbβ in enlarged endosomes was phosphatidylinositol 3-monophosphate dependent.
Conclusions:
Taken together, our results demonstrate that Rab5-dependent endocytosis plays an important role in megakaryocytes receptor trafficking, membrane formation, and thrombopoiesis.
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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