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2026

Book Chapter

Single-molecule localization microscopy with fixed photoactivatable fluorescent proteins and direct stochastic optical reconstruction microscopy

Amor, Rumelo, Malapaka, Anusha, McCann, Alex J., Meunier, Frédéric A. and Longfield, Shanley F. (2026). Single-molecule localization microscopy with fixed photoactivatable fluorescent proteins and direct stochastic optical reconstruction microscopy. Super-resolution microscopy: methods and protocols. (pp. 71-109) edited by Frederic A. Meunier. New York, NY United States: Humana New York. doi: 10.1007/978-1-0716-5268-8_5

Single-molecule localization microscopy with fixed photoactivatable fluorescent proteins and direct stochastic optical reconstruction microscopy

2026

Book Chapter

Tracking synaptic vesicles in live neurons using single-molecule super-resolution microscopy

Longfield, Shanley F. and Meunier, Frédéric A. (2026). Tracking synaptic vesicles in live neurons using single-molecule super-resolution microscopy. Super-resolution microscopy: methods and protocols. (pp. 189-209) edited by Frédéric A. Meunier. New York, United States: Humana Press. doi: 10.1007/978-1-0716-5268-8_9

Tracking synaptic vesicles in live neurons using single-molecule super-resolution microscopy

2025

Journal Article

Nanoscale spatiotemporal cluster analysis of expressed and endogenous proteins

Gormal, Rachel S., Wallis, Tristan P., McCann, Alex J., Kudo, Kye, Jiang, Anmin, Syed, Parnayan, Longfield, Shanley F., Amor, Rumelo and Meunier, Frédéric A. (2025). Nanoscale spatiotemporal cluster analysis of expressed and endogenous proteins. Nature Protocols, 20 (12), 3655-3694. doi: 10.1038/s41596-025-01209-w

Nanoscale spatiotemporal cluster analysis of expressed and endogenous proteins

2024

Journal Article

Dynamin1 long- and short-tail isoforms exploit distinct recruitment and spatial patterns to form endocytic nanoclusters

Jiang, Anmin, Kudo, Kye, Gormal, Rachel S., Ellis, Sevannah, Guo, Sikao, Wallis, Tristan P., Longfield, Shanley F., Robinson, Phillip J., Johnson, Margaret E., Joensuu, Merja and Meunier, Frédéric A. (2024). Dynamin1 long- and short-tail isoforms exploit distinct recruitment and spatial patterns to form endocytic nanoclusters. Nature Communications, 15 (1) 4060, 1-21. doi: 10.1038/s41467-024-47677-8

Dynamin1 long- and short-tail isoforms exploit distinct recruitment and spatial patterns to form endocytic nanoclusters

2024

Journal Article

Synapsin 2a tetramerisation selectively controls the presynaptic nanoscale organisation of reserve synaptic vesicles

Longfield, Shanley F., Gormal, Rachel S., Feller, Matis, Parutto, Pierre, Reingruber, Jürgen, Wallis, Tristan P., Joensuu, Merja, Augustine, George J., Martínez-Mármol, Ramón, Holcman, David and Meunier, Frédéric A. (2024). Synapsin 2a tetramerisation selectively controls the presynaptic nanoscale organisation of reserve synaptic vesicles. Nature Communications, 15 (1) 2217, 1-18. doi: 10.1038/s41467-024-46256-1

Synapsin 2a tetramerisation selectively controls the presynaptic nanoscale organisation of reserve synaptic vesicles

2024

Other Outputs

Longfield et al_2024_Synapsin

Meunier, Frederic, Bouquet, Mahe and Longfield, Shanley (2024). Longfield et al_2024_Synapsin. The University of Queensland. (Dataset) doi: 10.48610/be3832e

Longfield et al_2024_Synapsin

2023

Journal Article

Tau forms synaptic nano-biomolecular condensates controlling the dynamic clustering of recycling synaptic vesicles

Longfield, Shanley F., Mollazade, Mahdie, Wallis, Tristan P., Gormal, Rachel S., Joensuu, Merja, Wark, Jesse R., van Waardenberg, Ashley J., Small, Christopher, Graham, Mark E., Meunier, Frédéric A. and Martínez-Mármol, Ramón (2023). Tau forms synaptic nano-biomolecular condensates controlling the dynamic clustering of recycling synaptic vesicles. Nature Communications, 14 (1) 7277, 1-20. doi: 10.1038/s41467-023-43130-4

Tau forms synaptic nano-biomolecular condensates controlling the dynamic clustering of recycling synaptic vesicles

2023

Journal Article

Presynaptic targeting of botulinum neurotoxin type A requires a tripartite PSG‐Syt1 ‐ SV2 plasma membrane nanocluster for synaptic vesicle entry

Joensuu, Merja, Syed, Parnayan, Saber, Saber H., Lanoue, Vanessa, Wallis, Tristan P., Rae, James, Blum, Ailisa, Gormal, Rachel S., Small, Christopher, Sanders, Shanley, Jiang, Anmin, Mahrhold, Stefan, Krez, Nadja, Cousin, Michael A., Cooper‐White, Ruby, Cooper‐White, Justin J., Collins, Brett M., Parton, Robert G., Balistreri, Giuseppe, Rummel, Andreas and Meunier, Frédéric A. (2023). Presynaptic targeting of botulinum neurotoxin type A requires a tripartite PSG‐Syt1 ‐ SV2 plasma membrane nanocluster for synaptic vesicle entry. The EMBO Journal, 42 (13) e112095, e112095. doi: 10.15252/embj.2022112095

Presynaptic targeting of botulinum neurotoxin type A requires a tripartite PSG‐Syt1 ‐ SV2 plasma membrane nanocluster for synaptic vesicle entry

2023

Other Outputs

Longield et al_2023_NatComm_Raw

Gormal, Rachel, Meunier, Frederic, Martinez-Marmol, Ramon, Mollazade, Mahdie, Wallis, Tristan, Joensuu, Merja, Sanders, Shanley and Small, Christopher (2023). Longield et al_2023_NatComm_Raw. The University of Queensland. (Dataset) doi: 10.48610/a9c9def

Longield et al_2023_NatComm_Raw