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Nature Methods|September 24, 2013
Inducible control of gene expression with destabilized CreRichard Sando, Karsten Baumgaertel, Simon Pieraut, et al.Neuron|October 4, 2014
Experience-dependent remodeling of basket cell networks in the dentate gyrusSimon Pieraut, Natalia Gounko, Richard Sando, et al.Structure (London, England : 1993)|August 4, 2015
Structural Basis of Latrophilin-FLRT-UNC5 Interaction in Cell AdhesionYue C Lu, Olha V Nazarko, Richard Sando, et al.Biorxiv : the Preprint Server for Biology|April 17, 2023
The adhesion GPCRs CELSR1-3 and LPHN3 engage G proteins via distinct activation mechanismsDuy Lan Huong Bui, Andrew Roach, Jingxian Li, et al.Neuron|April 21, 2017
Assembly of Excitatory Synapses in the Absence of Glutamatergic NeurotransmissionRichard Sando, Eric Bushong, Yongchuan Zhu, et al.Nature Communications|May 3, 2020
Alternative splicing controls teneurin-latrophilin interaction and synapse specificity by a shape-shifting mechanismJingxian Li, Yuan Xie, Shaleeka Cornelius, et al.Cell|April 21, 2018
Structural Basis for Teneurin Function in Circuit-Wiring: A Toxin Motif at the SynapseJingxian Li, Moran Shalev-Benami, Richard Sando, et al.Elife|October 1, 2019
A toolbox of nanobodies developed and validated for use as intrabodies and nanoscale immunolabels in mammalian brain neuronsJie-Xian Dong, Yongam Lee, Michael Kirmiz, et al.Biorxiv : the Preprint Server for Biology|March 10, 2025
The Adhesion GPCR ADGRL2 engages Gα13 to Enable Epidermal DifferentiationXue Yang, Feng He, Douglas F Porter, et al.Proceedings of the National Academy of Sciences of the United States of America|November 18, 2025
The adhesion GPCR ADGRL2 engages Gα13 to enable epidermal differentiationXue Yang, Feng He, Vanessa Lopez-Pajares, et al.Pageof 2