kth.sePublications KTH
Change search
Link to record
Permanent link

Direct link
Publications (2 of 2) Show all publications
Alvelid, J., Damenti, M., Sgattoni, C. & Testa, I. (2022). Event-triggered STED imaging. Nature Methods, 19(10), 1268-1275
Open this publication in new window or tab >>Event-triggered STED imaging
2022 (English)In: Nature Methods, ISSN 1548-7091, E-ISSN 1548-7105, Vol. 19, no 10, p. 1268-1275Article in journal (Refereed) Published
Abstract [en]

Monitoring the proteins and lipids that mediate all cellular processes requires imaging methods with increased spatial and temporal resolution. STED (stimulated emission depletion) nanoscopy enables fast imaging of nanoscale structures in living cells but is limited by photobleaching. Here, we present event-triggered STED, an automated multiscale method capable of rapidly initiating two-dimensional (2D) and 3D STED imaging after detecting cellular events such as protein recruitment, vesicle trafficking and second messengers activity using biosensors. STED is applied in the vicinity of detected events to maximize the temporal resolution. We imaged synaptic vesicle dynamics at up to 24 Hz, 40 ms after local calcium activity; endocytosis and exocytosis events at up to 11 Hz, 40 ms after local protein recruitment or pH changes; and the interaction between endosomal vesicles at up to 3 Hz, 70 ms after approaching one another. Event-triggered STED extends the capabilities of live nanoscale imaging, enabling novel biological observations in real time.

Place, publisher, year, edition, pages
Springer Nature, 2022
Keywords
STED, microscopy, nanoscopy, super-resolution microscopy, automation, image analysis
National Category
Biophysics
Research subject
Biological Physics
Identifiers
urn:nbn:se:kth:diva-323543 (URN)10.1038/s41592-022-01588-y (DOI)000852266300001 ()36076037 (PubMedID)2-s2.0-85137548644 (Scopus ID)
Funder
EU, Horizon 2020, 964016EU, Horizon 2020, 964016
Note

QC 20230207

Available from: 2023-02-02 Created: 2023-02-02 Last updated: 2025-02-20Bibliographically approved
Damenti, M., Coceano, G., Mendes Silva, M., Alvelid, J., Sgattoni, C., Rems, L., . . . Testa, I.Quantitative and functional assessment of Arc n-meric states in membrane interaction and AMPA receptor endocytosis.
Open this publication in new window or tab >>Quantitative and functional assessment of Arc n-meric states in membrane interaction and AMPA receptor endocytosis
Show others...
(English)Manuscript (preprint) (Other academic)
Abstract [en]

Arc (or Arg3.1), Activity Regulated-Cytoskeleton associated-protein is pivotal to mediate plastic responses in neuronal cells. In vitro and in vivo studies suggest its ability to form high- and low-order oligomers which are potentially involved in neuronal trafficking. Despite its important function, no direct observation of Arc oligomers in cells has been presented due to its highly regulated spatiotemporal expression, the small size of the structures, the lack of appropriate labelling strategies and the background associated to free diffusing cytosolic proteins. Here, we take advantage of several complementary advanced fluorescence microscopy and spectroscopy techniques to observe and quantify Arc oligomeric states in cellular environment especially in the synapses. In cells, we uncovered Arc-Arc intermolecular interactions, Arc tendency to form liquid condensates and to interact with lipid bilayers. High-order oligomers are found to localize at the excitatory synaptic compartment and to directly affects AMPA receptor surface levels. Together, our observations support the model by which Arc oligomerization mediates plasma- membrane negative inward curvature favoring AMPA receptors endocytosis.

Keywords
Arc (Activity-regulated cytoskeleton-associated protein), AMPA receptors, oligomerization, STED, FCS, DNA-PAINT, STARSS, molecular dynamics simulations.
National Category
Biological Sciences
Research subject
Physics, Biological and Biomedical Physics
Identifiers
urn:nbn:se:kth:diva-339641 (URN)
Note

QC 20231115

Available from: 2023-11-15 Created: 2023-11-15 Last updated: 2023-11-15Bibliographically approved
Organisations
Identifiers
ORCID iD: ORCID iD iconorcid.org/0000-0003-0410-4635

Search in DiVA

Show all publications