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Cutting Edge: Membrane Nanotubes Connect Immune Cells
Author(s) -
Björn Önfelt,
Shlomo Nedvetzki,
Kumiko Yanagi,
Daniel M. Davis
Publication year - 2004
Publication title -
the journal of immunology
Language(s) - Uncategorized
Resource type - Journals
SCImago Journal Rank - 2.737
H-Index - 372
eISSN - 1550-6606
pISSN - 0022-1767
DOI - 10.4049/jimmunol.173.3.1511
Subject(s) - immunological synapse , immune system , microbiology and biotechnology , nanotube , cell , nanotechnology , synapse , intracellular , materials science , t cell , chemistry , biology , immunology , neuroscience , carbon nanotube , t cell receptor , biochemistry
We present evidence that nanotubular highways, or membrane nanotubes, facilitate a novel mechanism for intercellular communication in the immune system. Nanotubes were seen to connect multiple cells together and were readily formed between a variety of cell types, including human peripheral blood NK cells, macrophages, and EBV-transformed B cells. Nanotubes could be created upon disassembly of the immunological synapse, as cells move apart. Thus, nanotubular networks could be assembled from transient immunological synapses. Nanotubes were seen to contain GFP-tagged cell surface class I MHC protein expressed in one of the connected cells. Moreover, GPI-conjugated to GFP originating from one cell was transferred onto the surface of another at the connection with a nanotube. Thus, nanotubes can traffic cell surface proteins between immune cells over many tens of microns. Determining whether there are physiological functions for nanotubes is an intriguing new goal for cellular immunology.

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