Megapinosome: Morphological description of a novel organelle

Andrea Bauer1, Giada Frascaroli2, Paul Walther1

  • 1Electron Microscopy Facility, Ulm University, D-89081 Ulm, Germany.

Insights

The megapinosome, a novel organelle in human macrophages, features a unique trabecular meshwork connected to the cytosol. This structure likely aids macrophages in shape changes, material uptake, and microbial defense.

Area of Science:

  • Cell Biology
  • Macrophage Biology
  • Endocytosis

Background:

  • The megapinosome is an endocytic organelle observed in human macrophages.
  • Previous work identified its formation via megapinocytosis.
  • Its internal structure and connections were not fully understood.

Purpose of the Study:

  • To elucidate the three-dimensional structure of the megapinosome and associated cellular components.
  • To investigate the topological relationships between the megapinosome, cytosol, and vesicular pathway.
  • To identify connections between megapinosomes and other cellular structures.

Main Methods:

  • High-pressure freezing and freeze substitution of human macrophages.
  • Scanning transmission electron tomography (STEM) for high-resolution 3D imaging.
  • Analysis of ultrastructural details and cellular connections.

Main Results:

  • The megapinosome comprises a trabecular meshwork and lacunae, topologically continuous with the cytosol.
  • The lumen of the megapinosome is topologically equivalent to the vesicular pathway.
  • Connections were established between the trabecular meshwork and cytosol, and between megapinosomes and a larger "megapinosome complex".

Conclusions:

  • The study reveals the detailed 3D architecture of the megapinosome and its complex network within macrophages.
  • The findings suggest a role for megapinosomes in membrane storage for macrophage functions like motility and phagocytosis.
  • Advanced imaging techniques provide a more accurate view of macrophage ultrastructure compared to traditional methods.

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