T cell costimulatory receptor CD28 is a primary target for PD-1–mediated inhibition E Hui, J Cheung, J Zhu, X Su, MJ Taylor, HA Wallweber, DK Sasmal, ... Science 355 (6332), 1428-1433, 2017 | 1584 | 2017 |
Phase separation of signaling molecules promotes T cell receptor signal transduction X Su, JA Ditlev, E Hui, W Xing, S Banjade, J Okrut, DS King, J Taunton, ... Science 352 (6285), 595-599, 2016 | 1059 | 2016 |
Mechanisms underlying the dual-mode regulation of microtubule dynamics by Kip3/kinesin-8 X Su, W Qiu, ML Gupta, JB Pereira-Leal, SL Reck-Peterson, D Pellman Molecular cell 43 (5), 751-763, 2011 | 147 | 2011 |
Phase separation in immune signalling Q Xiao, CK McAtee, X Su Nature Reviews Immunology 22 (3), 188-199, 2022 | 114 | 2022 |
Microtubule-sliding activity of a kinesin-8 promotes spindle assembly and spindle-length control X Su, H Arellano-Santoyo, D Portran, J Gaillard, M Vantard, M Thery, ... Nature cell biology 15 (8), 948-957, 2013 | 103 | 2013 |
In vitro reconstitution of T cell receptor-mediated segregation of the CD45 phosphatase CB Carbone, N Kern, RA Fernandes, E Hui, X Su, KC Garcia, RD Vale Proceedings of the National Academy of Sciences 114 (44), E9338-E9345, 2017 | 98 | 2017 |
A composition-dependent molecular clutch between T cell signaling condensates and actin JA Ditlev, AR Vega, DV Köster, X Su, T Tani, AM Lakoduk, RD Vale, ... Elife 8, e42695, 2019 | 97 | 2019 |
A tubulin binding switch underlies Kip3/kinesin-8 depolymerase activity H Arellano-Santoyo, EA Geyer, E Stokasimov, GY Chen, X Su, ... Developmental cell 42 (1), 37-51. e8, 2017 | 85 | 2017 |
Move in for the kill: motile microtubule regulators X Su, R Ohi, D Pellman Trends in cell biology 22 (11), 567-575, 2012 | 59 | 2012 |
Surfing on membrane waves: Microvilli, curved membranes, and immune signaling R Orbach, X Su Frontiers in Immunology 11, 2187, 2020 | 53 | 2020 |
Size-dependent activation of CAR-T cells Q Xiao, X Zhang, L Tu, J Cao, CS Hinrichs, X Su Science immunology 7 (74), eabl3995, 2022 | 51 | 2022 |
Rewired signaling network in T cells expressing the chimeric antigen receptor (CAR) R Dong, KA Libby, F Blaeschke, W Fuchs, A Marson, RD Vale, X Su The EMBO Journal 39 (16), e104730, 2020 | 49 | 2020 |
PLCγ1 promotes phase separation of T cell signaling components L Zeng, I Palaia, A Šarić, X Su Journal of Cell Biology 220 (6), e202009154, 2021 | 45 | 2021 |
Reconstitution of TCR signaling using supported lipid bilayers X Su, JA Ditlev, MK Rosen, RD Vale The Immune Synapse: Methods and Protocols, 65-76, 2017 | 36 | 2017 |
SILAC phosphoproteomics reveals unique signaling circuits in CAR-T cells and the inhibition of B cell-activating phosphorylation in target cells AA Griffith, KP Callahan, NG King, Q Xiao, X Su, AR Salomon Journal of proteome research 21 (2), 395-409, 2022 | 10 | 2022 |
Characterization of kinesin-like proteins in silkworm posterior silkgland cells Q Wang, J Teng, B Shen, W Zhang, Y Guo, X Su, C Zhang, ACH Yu, ... Cell Research 20 (6), 713-727, 2010 | 8 | 2010 |
The physical landscape of CAR-T synapse Y Xiong, KA Libby, X Su Biophysical Journal, 2023 | 4 | 2023 |
Imaging chimeric antigen receptor (CAR) activation KA Libby, X Su T-Cell Receptor Signaling: Methods and Protocols, 153-160, 2020 | 3 | 2020 |
Anti-tumor Efficacy of CD19 CAR-T in a Raji B Cell Xenografted Mouse Model Q Xiao, X Su Bio-protocol 13 (8), 2023 | 1 | 2023 |
IDR-induced CAR condensation improves the cytotoxicity of CAR-Ts against low-antigen cancers X Zhang, Q Xiao, L Zeng, F Hashmi, X Su bioRxiv, 2023 | | 2023 |