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Origin, originality, functions, subversions and molecular signalling of macropinocytosis
Mustapha Amyere1, Marcel Mettlen, Patrick Van Der Smissen
1Cell biology Unit, UCL and ICP, Brussels, Belgium.
Abstract:
Macropinocytosis refers to the formation of primary large endocytic vesicles of irregular size and shape, generated by actin-driven evaginations of the plasma membrane, whereby cells avidly incorporate extracellular fluid. Macropinosomes resemble "empty" phagosomes and show no difference with the "spacious phagosomes" triggered by the enteropathogenic bacteria Salmonella and Shigella. Macropinosomes may fuse with lysosomes or regurgitate their content back to the extracellular space. In multiple cell types, macropinocytosis is a transient response to growth factors. When amoebas are cultured under axenic conditions, macropinocytosis is induced so as to fulfil nutritional requirements. In immature dendritic cells, macropinocytosis allows for extensive sampling of soluble antigens; after a few days of maturation, this activity vanishes as processed peptides are being presented. Macropinosomes are also formed at the leading edge of motile leukocytes or neurons. In all these examples, macropinocytosis appears tightly regulated. Transformation of fibroblasts by Src or Ras also results in constitutive formation of macropinosomes at "ruffling" zones, that could be related to accelerated cell motility. Like phagocytosis, macropinocytosis depends on signalling to the actin cytoskeleton. We have explored this signalling in transformed cells. v-Src and K-Ras activate PI3K and PLC, as demonstrated by in situ production of the corresponding lipid products. Pharmacological inhibitors of PI3K and PLC and stable transfection leading to a dominant-negative PI3-kinase construct in transformed fibroblasts abolish macropinocytosis, demonstrating that both enzyme activities are essential. Conversely, stable transfection leading to a dominant-positive P13K in non-transformed fibroblasts is sufficient to induce macropinocytosis. Combination of experiments allows to conclude that P13K and PLC act in sequential order. In non-polarized cells expressing a thermosensitive v-Src mutant, v-Src kinase activation accelerates fluid-phase endocytosis. In polarized MDCK cells, this stimulation occurs selectively at the apical domain and the response is selectively abrogated by pharmacological inhibitors of P13K and PLC. Thus, two paradigmatic oncogenes cause constitutive macropinocytosis. For v-Src, this response is polarized at the apical membrane. It is suggested that, in enterocytes that do not normally phagocytose, the P13K-PLC signalling pathway leading to selective induction of macropinocytosis at the luminal surface has been subverted by enteropathogenic bacteria to penetrate via "spacious phagosomes".
Insights
Macropinocytosis, a cellular process for fluid uptake, is regulated by PI3K and PLC signaling pathways. These pathways are essential for macropinosome formation and can be hijacked by pathogens.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Macropinocytosis is a form of endocytosis involving the formation of large, actin-driven vesicles to internalize extracellular fluid.
- This process is observed in various cell types, including amoebas, dendritic cells, and leukocytes, and is often transiently induced by growth factors or for nutritional purposes.
- Constitutive macropinocytosis can occur in cancer cells transformed by oncogenes like Src and Ras, potentially contributing to increased motility.
Purpose of the Study:
- To investigate the signaling pathways regulating macropinocytosis, particularly in the context of oncogene-induced transformation.
- To determine the roles of phosphatidylinositol 3-kinase (PI3K) and phospholipase C (PLC) in macropinocytosis.
- To explore how pathogens might subvert this pathway for cellular entry.
Main Methods:
- Utilized pharmacological inhibitors of PI3K and PLC in transformed fibroblasts.
- Employed stable transfection with dominant-negative and dominant-positive PI3K constructs.
- Investigated macropinocytosis in polarized MDCK cells expressing a thermosensitive v-Src mutant.
Main Results:
- Both PI3K and PLC activities were found to be essential for macropinocytosis in transformed fibroblasts.
- PI3K and PLC act in a sequential order to regulate macropinocytosis.
- Constitutive macropinocytosis induced by v-Src is polarized to the apical membrane in MDCK cells and is dependent on PI3K and PLC.
Conclusions:
- The PI3K-PLC signaling pathway is crucial for the induction and regulation of macropinocytosis.
- Oncogenes like v-Src and K-Ras can lead to constitutive macropinocytosis via this pathway.
- Enteropathogenic bacteria may exploit the PI3K-PLC pathway to facilitate entry into host cells through macropinocytosis.