Researcher Portfolio

 
   

Corbeil, Denis

Max Planck Institute of Molecular Cell Biology and Genetics, Max Planck Society  

 

Researcher Profile

 
Position: Max Planck Institute of Molecular Cell Biology and Genetics, Max Planck Society
Researcher ID: https://pure.mpg.de/cone/persons/resource/persons219079

External references

 

Publications

 
  (1 - 25 of 46)
 : Karbanová, J., Deniz, I. A., Wilsch-Bräuninger, M., Couto, R. A. d. S., Fargeas, C. A., Santos, M. F., Lorico, A., & Corbeil, D. (2024). Extracellular lipidosomes containing lipid droplets and mitochondria are released during melanoma cell division. Cell communication and signaling: CCS, 22(1): 57. doi:10.1186/s12964-024-01471-7. [PubMan] : Corbeil, D., & Huttner, W. B. (2021). Protein tyrosine sulfation. In J. Jez (Ed.), Encyclopedia of Biological Chemistry: Vol. 3 (3rd ed.) (pp. 192-205). Amsterdam, Netherlands: Elsevier. [PubMan] : Jászai, J., Thamm, K., Karbanová, J., Janich, P., Fargeas, C. A., Huttner, W., & Corbeil, D. (2020). Prominins control ciliary length throughout the animal kingdom: New lessons from human prominin-1 and zebrafish prominin-3. The Journal of biological chemistry, 295(18), 6007-6022. doi:10.1074/jbc.RA119.011253. [PubMan] : Singer, D., Thamm, K., Zhuang, H., Karbanová, J., Gao, Y., Walker, J. V., Jin, H., Wu, X., Coveney, C. R., Marangoni, P., Lu, D., Grayson, P. R. C., Gulsen, T., Liu, K. J., Ardu, S., Wann, A. K., Luo, S., Zambon, A. C., Jetten, A. M., Tredwin, C., Klein, O. D., Attanasio, M., Carmeliet, P., Huttner, W., Corbeil, D., & Hu, B. (2019). Prominin-1 controls stem cell activation by orchestrating ciliary dynamics. The EMBO journal, 38(2): e99845. doi:10.15252/embj.201899845. [PubMan] : Thamm, K., Šimaitė, D., Karbanová, J., Bermúdez, V., Reichert, D., Morgenstern, A., Bornhäuser, M., Huttner, W., Wilsch-Bräuninger, M., & Corbeil, D. (2019). Prominin-1 (CD133) modulates the architecture and dynamics of microvilli. Traffic (Copenhagen, Denmark), 20(1), 39-60. doi:10.1111/tra.12618. [PubMan] : Thamm, K., Graupner, S., Werner, C., Huttner, W. B., & Corbeil, D. (2016). Monoclonal Antibodies 13A4 and AC133 Do Not Recognize the Canine Ortholog of Mouse and Human Stem Cell Antigen Prominin-1 (CD133). PLoS ONE, 11(10): e0164079. [PubMan] : Karbanová, J., Laco, J., Marzesco, A.-M., Janich, P., Voborníková, M., Mokrý, J., Fargeas, C. A., Huttner, W. B., & Corbeil, D. (2014). Human prominin-1 (CD133) is detected in both neoplastic and non-neoplastic salivary gland diseases and released into saliva in a ubiquitinated form. PLoS ONE, 9(6): e98927. [PubMan] : Jászai, J., Graupner, S., Tanaka, E. M., Funk, R., Huttner, W. B., Brand, M., & Corbeil, D. (2013). Spatial distribution of prominin-1 (CD133)-positive cells within germinative zones of the vertebrate brain. PLoS ONE, 8(5): e63457. [PubMan] : Gurudev, N., Florek, M., Corbeil, D., & Knust, E. (2013). Prominent role of prominin in the retina. Advances in Experimental Medicine and Biology, 777, 55-71. [PubMan] : Rappa, G., Mercapide, J., Anzanello, F., Le, T. T., Johlfs, M. G., Fiscus, R. R., Wilsch-Bräuninger, M., Corbeil, D., & Lorico, A. (2013). Wnt interaction and extracellular release of prominin-1/CD133 in human malignant melanoma cells. Experimental Cell Research, 319(6), 810-819. [PubMan] : Missol-Kolka, E., Karbanová, J., Janich, P., Haase, M., Fargeas, C. A., Huttner, W. B., & Corbeil, D. (2011). Prominin-1 (CD133) is not restricted to stem cells located in the basal compartment of murine and human prostate. The Prostate, 71(3), 254-267. [PubMan] : Bauer, N., Wilsch-Bräuninger, M., Karbanová, J., Fonseca, A.-V., Strauss, D., Freund, D., Thiele, C., Huttner, W. B., Bornhäuser, M., & Corbeil, D. (2011). Haematopoietic stem cell differentiation promotes the release of prominin-1/CD133-containing membrane vesicles-a role of the endocytic-exocytic pathway. EMBO Molecular Medicine, 3(7), 398-409. [PubMan] : Ettinger, A., Wilsch-Bräuninger, M., Marzesco, A.-M., Bickle, M., Lohmann, A., Maliga, Z., Karbanová, J., Corbeil, D., Hyman, A. A., & Huttner, W. B. (2011). Proliferating versus differentiating stem and cancer cells exhibit distinct midbody-release behaviour. Nature Communications, 2: 503. [PubMan] : Jászai, J., Fargeas, C. A., Graupner, S., Tanaka, E. M., Brand, M., Huttner, W. B., & Corbeil, D. (2011). Distinct and conserved prominin-1/CD133-positive retinal cell populations identified across species. PLoS ONE, 6(3): e17590. [PubMan] : Corbeil, D., Marzesco, A.-M., Fargeas, C. A., & Huttner, W. B. (2010). Prominin-1: a distinct cholesterol-binding membrane protein and the organisation of the apical plasma membrane of epithelial cells. In J. R. Harris (Ed.), Cholesterol binding and cholesterol transport proteins: structure and function in health and disease (pp. 399-423). Dordrecht: Springer. [PubMan] : Corbeil, D., Marzesco, A.-M., Wilsch-Bräuninger, M., & Huttner, W. B. (2010). The intriguing links between prominin-1 (CD133), cholesterol-based membrane microdomains, remodeling of apical plasma membrane protrusions, extracellular membrane particles, and (neuro)epithelial cell differentiation. FEBS Letters, 584(9), 1659-1664. [PubMan] : Fietz, S., Kelava, I., Vogt, J., Wilsch-Bräuninger, M., Stenzel, D., Fish, J. L., Corbeil, D., Riehn, A., Distler, W., Nitsch, R., & Huttner, W. B. (2010). OSVZ progenitors of human and ferret neocortex are epithelial-like and expand by integrin signaling. Nature Neuroscience, 13(6), 690-699. [PubMan] : Jászai, J., Farkas, L. M., Fargeas, C. A., Janich, P., Haase, M., Huttner, W. B., & Corbeil, D. (2010). Prominin-2 is a novel marker of distal tubules and collecting ducts of the human and murine kidney. Histochemistry and Cell Biology, 133(5), 527-539. [PubMan] : Corbeil, D., Joester, A., Fargeas, C. A., Jaszai, J., Garwood, J., Hellwig, A., Werner, H. B., & Huttner, W. B. (2009). Expression of distinct splice variants of the stem cell marker prominin-1 (CD133) in glial cells. GLIA, 57(8), 860-874. [PubMan] : Marzesco, A.-M., Wilsch-Bräuninger, M., Dubreuil, V., Janich, P., Langenfeld, K., Thiele, C., Huttner, W. B., & Corbeil, D. (2009). Release of extracellular membrane vesicles from microvilli of epithelial cells is enhanced by depleting membrane cholesterol. FEBS Letters, 583(5), 897-902. [PubMan] : Zacchigna, S., Oh, H., Wilsch-Brauninger, M., Missol-Kolka, E., Jaszai, J., Jansen, S., Tanimoto, N., Tonagel, F., Seeliger, M., Huttner, W. B., Corbeil, D., Dewerchin, M., Vinckier, S., Moons, L., & Carmeliet, P. (2009). Loss of the cholesterol-binding protein prominin-1/CD133 causes disk dysmorphogenesis and photoreceptor degeneration. Journal of Neuroscience, 29(7), 2297-2308. [PubMan] : Huttner, H. B., Janich, P., Kohrmann, M., Jaszai, J., Siebzehnrubl, F., Blumcke, I., Suttorp, M., Gahr, M., Kuhnt, D., Nimsky, C., Krex, D., Schackert, G., Lowenbruck, K., Reichmann, H., Juttler, E., Hacke, W., Schellinger, P. D., Schwab, S., Wilsch-Bräuninger, M., Marzesco, A.-M., & Corbeil, D. (2008). The stem cell marker prominin-1/CD133 on membrane particles in human cerebrospinal fluid offers novel approaches for studying central nervous system disease. Stem Cells, 26(3), 698-705. [PubMan] : Lardon, J., Corbeil, D., Huttner, W. B., Ling, Z., & Bouwens, L. (2008). Stem cell marker prominin-1/AC133 is expressed in duct cells of the adult human pancreas. Pancreas, 36(1), 1-6. [PubMan] : Jaszai, J., Fargeas, C. A., Haase, M., Farkas, L. M., Huttner, W. B., & Corbeil, D. (2008). Robust expression of Prominin-2 all along the adult male reproductive system and urinary bladder. Histochemistry and Cell Biology, 130(4), 749-759. [PubMan] : Yang, Z., Chen, Y., Lillo, C., Chien, J., Yu, Z., Michaelides, M., Klein, M., Howes, K. A., Li, Y., Kaminoh, Y., Chen, H., Zhao, C., Chen, Y., Al-Sheikh, Y. T., Karan, G., Corbeil, D., Escher, P., Kamaya, S., Li, C., Johnson, S., Frederick, J. M., Zhao, Y., Wang, C., Cameron, D. J., Huttner, W. B., Schorderet, D. F., Munier, F. L., Moore, A. T., Birch, D. G., Baehr, W., Hunt, D. M., Williams, D. S., & Zhang, K. (2008). Mutant prominin 1 found in patients with macular degeneration disrupts photoreceptor disk morphogenesis in mice. Journal of Clinical Investigation, 118(8), 2908-2916. [PubMan]