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The tumor suppressor protein DLC1 maintains protein kinase D activity and Golgi secretory function

, , , , , , , and . Journal of biological chemistry, 293 (37): 14407-14416 (2018)
DOI: 10.1074/jbc.RA118.003787

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Yannick Schellander University of Stuttgart

Replication Data for: Highly efficient real-time spatially resolved sensing of ultraviolet light, , , , , , , and . Dataset, (2025)Related to: Yannick Schellander, Fabian Munkes, Alexander Trachtmann, Patrick Schalberger, Robert Löw, Harald Kübler, Tilman Pfau, Norbert Fruehauf, "Highly efficient real-time spatially resolved sensing of ultraviolet light," Proc. SPIE 13109, Metamaterials, Metadevices, and Metasystems 2024, 1310906 (2024). doi: 10.1117/12.3028038.
Replication Data for: Highly efficient real-time spatially resolved sensing of ultraviolet light, , , , , , , and . Dataset, (2025)Related to: Yannick Schellander, Fabian Munkes, Alexander Trachtmann, Patrick Schalberger, Robert Löw, Harald Kübler, Tilman Pfau, Norbert Fruehauf, "Highly efficient real-time spatially resolved sensing of ultraviolet light," Proc. SPIE 13109, Metamaterials, Metadevices, and Metasystems 2024, 1310906 (2024). doi: 10.1117/12.3028038.Replication Data for: Ultraviolet photodetectors and readout based on a-IGZO semiconductor technology, , , , , , , and . Dataset, (2025)Related to: Schellander Y, Winter M, Schamber M, Munkes F, Schalberger P, Kuebler H, et al. Ultraviolet photodetectors and readout based on a-IGZO semiconductor technology. J Soc Inf Display. 2023; 31(5): 363-372. doi: 10.1002/jsid.1202.Replication Data for: Ultraviolet Photodetectors and their Readout Realization for Future Active-Matrix Sensing, , , , , , , and . Dataset, (2025)Related to: Y. Schellander, M. Schamber, F. Munkes, R. Loew, P. Schalberger, H. Kübler, T. Pfau, and N. Fruehauf, “Ultraviolet photodetectors and their readout realization for future active-matrix sensing”, Proceedings of the International Display Workshops,30 (2023), 151-154. doi: 10.36463/idw.2023.0151.
 

Other publications of authors with the same name

Proteasomal turnover of the RhoGAP tumor suppressor DLC1 is regulated by HECTD1 and USP7, , , and . Scientific reports, (2022)Regulation and functions of the DLC family of RhoGAP proteins: Implications for development and cancer, , and . Cellular Signalling, (2024)DLC3 suppresses MT1-MMP-dependent matrix degradation by controlling RhoB and actin remodeling at endosomal membranes, , , , , , , , and . Journal of Cell Science, 132 (11): jcs223172 (2019)Regulation and functions of the DLC family of RhoGAP proteins : Implications for development and cancer, , and . Cellular signalling, 125 (January): 111505 (2025)The tumor suppressor protein DLC1 maintains protein kinase D activity and Golgi secretory function, , , , , , , and . Journal of Biological Chemistry, (July 2018)Regulation of the DLC3 tumor suppressor by a novel phosphoswitch, , , , , , , , , and 1 other author(s). iScience, 27 (7): 110203 (2024)Novel regulatory mechanisms of the RhoGAP tumor suppressor proteins Deleted in Liver Cancer 1 & 3. Universität Stuttgart, Stuttgart, Dissertation, (2024)The tumor suppressor protein DLC1 maintains protein kinase D activity and Golgi secretory function, , , , , , , and . Journal of biological chemistry, 293 (37): 14407-14416 (2018)