
Reconstitution of immune cell interactions in free-standing membranes
Author(s) -
Edward Jenkins,
Ana Mafalda Santos,
Caitlin O’Brien-Ball,
James H. Felce,
Martin J. Wilcock,
Deborah Hatherley,
Michael L. Dustin,
Simon J. Davis,
Christian Eggeling,
Erdinç Sezgin
Publication year - 2018
Publication title -
journal of cell science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.384
H-Index - 278
eISSN - 1477-9137
pISSN - 0021-9533
DOI - 10.1242/jcs.219709
Subject(s) - biology , immune system , signalling , microbiology and biotechnology , cell , computational biology , cell signaling , signal transduction , immunology , biochemistry
The spatiotemporal regulation of signalling proteins at the contacts formed between immune cells and their targets determines how and when immune responses begin and end. Therapeutic control of immune responses therefore relies on thorough elucidation of the molecular processes occurring at these interfaces. However, the detailed investigation of each component's contribution to the formation and regulation of the contact is hampered by the complexities of cell composition and architecture. Moreover, the transient nature of these interactions creates additional challenges, especially in the use of advanced imaging technology. One approach that circumvents these problems is to establish in vitro systems that faithfully mimic immune cell interactions, but allow complexity to be 'dialled-in' as needed. Here, we present an in vitro system that makes use of synthetic vesicles that mimic important aspects of immune cell surfaces. Using this system, we began to explore the spatial distribution of signalling molecules (receptors, kinases and phosphatases) and how this changes during the initiation of signalling. The GUV/cell system presented here is expected to be widely applicable.