A1 Vertaisarvioitu alkuperäisartikkeli tieteellisessä lehdessä
Nanoscale organization and dynamics of the siglec CD22 cooperate with the cytoskeleton in restraining BCR signalling
Tekijät: Gasparrini F, Feest C, Bruckbauer A, Mattila PK, Muller J, Nitschke L, Bray D, Batista FD
Kustantaja: WILEY-BLACKWELL
Julkaisuvuosi: 2016
Journal: EMBO Journal
Tietokannassa oleva lehden nimi: EMBO JOURNAL
Lehden akronyymi: EMBO J
Vuosikerta: 35
Numero: 3
Aloitussivu: 258
Lopetussivu: 280
Sivujen määrä: 23
ISSN: 0261-4189
DOI: https://doi.org/10.15252/embj.201593027
Receptor organization and dynamics at the cell membrane are important factors of signal transduction regulation. Using super-resolution microscopy and single-particle tracking, we show how the negative coreceptor CD22 works with the cortical cytoskeleton in restraining BCR signalling. In naive B cells, we found endogenous CD22 to be highly mobile and organized into nanodomains. The landscape of CD22 and its lateral diffusion were perturbed either in the absence of CD45 or when the CD22 lectin domain was mutated. To understand how a relatively low number of CD22 molecules can keep BCR signalling in check, we generated Brownian dynamic simulations and supported them with exvivo experiments. This combined approach suggests that the inhibitory function of CD22 is influenced by its nanoscale organization and is ensured by its fast diffusion enabling a "global BCR surveillance" at the plasma membrane.