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2023

Conference Publication

Dissection of alpha‐synuclein specific synaptic functions by gene editing

Madhivanan, Kayalvizhi, Parra‐Rivas, Leonardo A., Joensuu, Merja, Sanders, Shanley, Caballero‐Florán, René, Bingham, Dominic, Sharma, Rohan, Jenkins, Paul M., Leterrier, Christophe, Meunier, Frederic A. and Roy, Subhojit (2023). Dissection of alpha‐synuclein specific synaptic functions by gene editing. Alzheimer’s Association International Conference AAIC 2023, Amsterdam, Netherlands, 16-20 July 2023. Hoboken, NJ United States: John Wiley & Sons. doi: 10.1002/alz.082510

Dissection of alpha‐synuclein specific synaptic functions by gene editing

2023

Journal Article

SARS-CoV-2 omicron BA.5 and XBB variants have increased neurotropic potential over BA.1 in K18-hACE2 mice and human brain organoids

Stewart, Romal, Yan, Kexin, Ellis, Sevannah A., Bishop, Cameron R., Dumenil, Troy, Tang, Bing, Nguyen, Wilson, Larcher, Thibaut, Parry, Rhys, Sng, Julian De Jun, Khromykh, Alexander A., Sullivan, Robert K. P., Lor, Mary, Meunier, Frédéric A., Rawle, Daniel J. and Suhrbier, Andreas (2023). SARS-CoV-2 omicron BA.5 and XBB variants have increased neurotropic potential over BA.1 in K18-hACE2 mice and human brain organoids. Frontiers in Microbiology, 14 1320856, 1-18. doi: 10.3389/fmicb.2023.1320856

SARS-CoV-2 omicron BA.5 and XBB variants have increased neurotropic potential over BA.1 in K18-hACE2 mice and human brain organoids

2023

Journal Article

Fear extinction is regulated by the activity of long noncoding RNAs at the synapse

Liau, Wei-Siang, Zhao, Qiongyi, Bademosi, Adekunle, Gormal, Rachel S., Gong, Hao, Marshall, Paul R., Periyakaruppiah, Ambika, Madugalle, Sachithrani U., Zajaczkowski, Esmi L., Leighton, Laura J., Ren, Haobin, Musgrove, Mason, Davies, Joshua, Rauch, Simone, He, Chuan, Dickinson, Bryan C., Li, Xiang, Wei, Wei, Meunier, Frédéric A., Fernández-Moya, Sandra M., Kiebler, Michael A., Srinivasan, Balakumar, Banerjee, Sourav, Clark, Michael, Spitale, Robert C. and Bredy, Timothy W. (2023). Fear extinction is regulated by the activity of long noncoding RNAs at the synapse. Nature Communications, 14 (1) 7616, 1-16. doi: 10.1038/s41467-023-43535-1

Fear extinction is regulated by the activity of long noncoding RNAs at the synapse

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

Book Chapter

Functional roles of UNC-13/Munc13 and UNC-18/Munc18 in neurotransmission

Meunier, Frédéric A. and Hu, Zhitao (2023). Functional roles of UNC-13/Munc13 and UNC-18/Munc18 in neurotransmission. Advances in neurobiology. (pp. 203-231) edited by Zhao-Wen Wang. Cham, Switzerland: Springer. doi: 10.1007/978-3-031-34229-5_8

Functional roles of UNC-13/Munc13 and UNC-18/Munc18 in neurotransmission

2023

Journal Article

SARS-CoV-2 infection and viral fusogens cause neuronal and glial fusion that compromises neuronal activity

Martínez-Mármol, Ramón, Giordano-Santini, Rosina, Kaulich, Eva, Cho, Ann-Na, Przybyla, Magdalena, Riyadh, Md Asrafuzzaman, Robinson, Emilija, Chew, Keng Yih, Amor, Rumelo, Meunier, Frédéric A., Balistreri, Giuseppe, Short, Kirsty R., Ke, Yazi D., Ittner, Lars M. and Hilliard, Massimo A. (2023). SARS-CoV-2 infection and viral fusogens cause neuronal and glial fusion that compromises neuronal activity. Science Advances, 9 (23) eadg2248, 1-15. doi: 10.1126/sciadv.adg2248

SARS-CoV-2 infection and viral fusogens cause neuronal and glial fusion that compromises neuronal activity

2023

Journal Article

Super-resolved trajectory-derived nanoclustering analysis using spatiotemporal indexing

Wallis, Tristan P., Jiang, Anmin, Young, Kyle, Hou, Huiyi, Kudo, Kye, McCann, Alex J., Durisic, Nela, Joensuu, Merja, Oelz, Dietmar, Nguyen, Hien, Gormal, Rachel S. and Meunier, Frédéric A. (2023). Super-resolved trajectory-derived nanoclustering analysis using spatiotemporal indexing. Nature Communications, 14 (1) 3353, 1-16. doi: 10.1038/s41467-023-38866-y

Super-resolved trajectory-derived nanoclustering analysis using spatiotemporal indexing

2023

Journal Article

Hericerin derivatives activates a pan‐neurotrophic pathway in central hippocampal neurons converging to ERK1 /2 signaling enhancing spatial memory

Martínez‐Mármol, Ramón, Chai, YeJin, Conroy, Jacinta N., Khan, Zahra, Hong, Seong‐Min, Kim, Seon Beom, Gormal, Rachel S., Lee, Dae Hee, Lee, Jae Kang, Coulson, Elizabeth J., Lee, Mi Kyeong, Kim, Sun Yeou and Meunier, Frédéric A. (2023). Hericerin derivatives activates a pan‐neurotrophic pathway in central hippocampal neurons converging to ERK1 /2 signaling enhancing spatial memory. Journal of Neurochemistry, 165 (6), 791-808. doi: 10.1111/jnc.15767

Hericerin derivatives activates a pan‐neurotrophic pathway in central hippocampal neurons converging to ERK1 /2 signaling enhancing spatial memory

2023

Journal Article

Tyrosine kinases compete for growth hormone receptor binding and regulate receptor mobility and degradation

Chhabra, Yash, Seiffert, Pernille, Gormal, Rachel S., Vullings, Manon, Lee, Christine Mei Mei, Wallis, Tristan P., Dehkhoda, Farhad, Indrakumar, Sowmya, Jacobsen, Nina L., Lindorff-Larsen, Kresten, Durisic, Nela, Waters, Michael J., Meunier, Frederic A., Kragelund, Birthe B. and Brooks, Andrew J. (2023). Tyrosine kinases compete for growth hormone receptor binding and regulate receptor mobility and degradation. Cell Reports, 42 (5) 112490, 112490. doi: 10.1016/j.celrep.2023.112490

Tyrosine kinases compete for growth hormone receptor binding and regulate receptor mobility and degradation

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

Journal Article

EndophilinA-dependent coupling between activity-induced calcium influx and synaptic autophagy is disrupted by a Parkinson-risk mutation

Bademosi, Adekunle T., Decet, Marianna, Kuenen, Sabine, Calatayud, Carles, Swerts, Jef, Gallego, Sandra F., Schoovaerts, Nils, Karamanou, Spyridoula, Louros, Nikolaos, Martin, Ella, Sibarita, Jean-Baptiste, Vints, Katlijn, Gounko, Natalia V., Meunier, Frédéric A., Economou, Anastassios, Versées, Wim, Rousseau, Frederic, Schymkowitz, Joost, Soukup, Sandra-F. and Verstreken, Patrik (2023). EndophilinA-dependent coupling between activity-induced calcium influx and synaptic autophagy is disrupted by a Parkinson-risk mutation. Neuron, 111 (9), 1402-1422.e13. doi: 10.1016/j.neuron.2023.02.001

EndophilinA-dependent coupling between activity-induced calcium influx and synaptic autophagy is disrupted by a Parkinson-risk mutation

2023

Book Chapter

Lipids and Secretory Vesicle Exocytosis

Akefe, Isaac O., Osborne, Shona L., Matthews, Benjamin, Wallis, Tristan P. and Meunier, Frédéric A. (2023). Lipids and Secretory Vesicle Exocytosis. Advances in Neurobiology. (pp. 357-397) Cham, Switzerland: Springer. doi: 10.1007/978-3-031-34229-5_14

Lipids and Secretory Vesicle Exocytosis

2023

Other Outputs

BoNT/A binding and endocytosis in primary neurons

Joensuu, Merja and Meunier, Frederic (2023). BoNT/A binding and endocytosis in primary neurons. The University of Queensland. (Dataset) doi: 10.48610/06039ff

BoNT/A binding and endocytosis in primary neurons

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

2022

Journal Article

Gut microbial DNA and immune checkpoint gene Vsig4/CRIg are key antagonistic players in healthy aging and age-associated development of hypertension and diabetes

Liu, Matthew A., Shahabi, Shandy, Jati, Suborno, Tang, Kechun, Gao, Hong, Jin, Zhongmou, Miller, Wyatt, Meunier, Frédéric A., Ying, Wei, Bogaart, Geert van den, Ghosh, Gourisankar and Mahata, Sushil K. (2022). Gut microbial DNA and immune checkpoint gene Vsig4/CRIg are key antagonistic players in healthy aging and age-associated development of hypertension and diabetes. Frontiers in Endocrinology, 13 1037465, 1-18. doi: 10.3389/fendo.2022.1037465

Gut microbial DNA and immune checkpoint gene Vsig4/CRIg are key antagonistic players in healthy aging and age-associated development of hypertension and diabetes

2022

Journal Article

Fyn nanoclustering requires switching to an open conformation and is enhanced by FTLD-Tau biomolecular condensates

Martínez-Mármol, Ramón, Small, Christopher, Jiang, Anmin, Palliyaguru, Tishila, Wallis, Tristan P., Gormal, Rachel S., Sibarita, Jean-Baptiste, Götz, Jürgen and Meunier, Frédéric A. (2022). Fyn nanoclustering requires switching to an open conformation and is enhanced by FTLD-Tau biomolecular condensates. Molecular Psychiatry, 28 (2), 946-862. doi: 10.1038/s41380-022-01825-y

Fyn nanoclustering requires switching to an open conformation and is enhanced by FTLD-Tau biomolecular condensates

2022

Book Chapter

Unveiling the nanoscale dynamics of the exocytic machinery in chromaffin cells with single-molecule imaging

Bademosi, Adekunle T. and Meunier, Frédéric A (2022). Unveiling the nanoscale dynamics of the exocytic machinery in chromaffin cells with single-molecule imaging. Chromaffin Cells. (pp. 311-327) edited by Ricardo Borges. New York, NY USA: Humana New York. doi: 10.1007/978-1-0716-2671-9_21

Unveiling the nanoscale dynamics of the exocytic machinery in chromaffin cells with single-molecule imaging

2022

Journal Article

Ancestral SARS-CoV-2, but not Omicron, replicates less efficiently in primary pediatric nasal epithelial cells

Zhu, Yanshan, Chew, Keng Yih, Wu, Melanie, Karawita, Anjana C., McCallum, Georgina, Steele, Lauren E., Yamamoto, Ayaho, Labzin, Larisa I., Yarlagadda, Tejasri, Khromykh, Alexander A., Wang, Xiaohui, Sng, Julian D. J., Stocks, Claudia J., Xia, Yao, Kollmann, Tobias R., Martino, David, Joensuu, Merja, Meunier, Frédéric A., Balistreri, Giuseppe, Bielefeldt-Ohmann, Helle, Bowen, Asha C., Kicic, Anthony, Sly, Peter D., Spann, Kirsten M. and Short, Kirsty R. (2022). Ancestral SARS-CoV-2, but not Omicron, replicates less efficiently in primary pediatric nasal epithelial cells. PLoS Biology, 20 (8) e3001728, 1-19. doi: 10.1371/journal.pbio.3001728

Ancestral SARS-CoV-2, but not Omicron, replicates less efficiently in primary pediatric nasal epithelial cells

2022

Journal Article

Nanoscale organization of the pre-synapse: tracking the neurotransmitter release machinery

Gormal, Rachel S. and Meunier, Frédéric A. (2022). Nanoscale organization of the pre-synapse: tracking the neurotransmitter release machinery. Current Opinion in Neurobiology, 75 102576, 1-10. doi: 10.1016/j.conb.2022.102576

Nanoscale organization of the pre-synapse: tracking the neurotransmitter release machinery

2022

Journal Article

Spatial redistribution of neurosecretory vesicles upon stimulation accelerates their directed transport to the plasma membrane

Schenk, Elaine B., Meunier, Frederic A. and Oelz, Dietmar B. (2022). Spatial redistribution of neurosecretory vesicles upon stimulation accelerates their directed transport to the plasma membrane. PLoS One, 17 (3) e0264521, e0264521. doi: 10.1371/journal.pone.0264521

Spatial redistribution of neurosecretory vesicles upon stimulation accelerates their directed transport to the plasma membrane