• Netherlands

  • Netherlands

Research Output

Article

Zebrafish development and regeneration: new tools for biomedical research

Brittijn, S. A., Duivesteijn, S. J., Belmamoune, M., Bertens, L. F., Bitter, W., de Bruijn, J. D., Champagne, D. L., Cuppen, E., Flik, G., Vandenbroucke-Grauls, C. M., Janssen, R. A., De Jong, I. M., De Kloet, E. R., Kros, A., Meijer, A. H., Metz, J. R., Van der Sar, A. M., Schaaf, M. J., Schulte-Merker, S., Spaink, H. P. & 7 others, Tak, P. P., Verbeek, F. J., Vervoordeldonk, M. J., Vonk, F. J., Witte, F., Yuan, H. & Richardson, M. K., 2009, In : International Journal of Developmental Biology. 53, 5-6, p. 835-850

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Zebrafish enpp1 mutants exhibit pathological mineralization, mimicking features of generalized arterial calcification of infancy (GACI) and pseudoxanthoma elasticum (PXE)

Apschner, A., Huitema, L. F. A., Ponsioen, B., Peterson-Maduro, J. & Schulte-Merker, S., Jul 2014, In : Disease Models & Mechanisms. 7, 7, p. 811-22 12 p.

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Zebrafish integrin-linked kinase is required in skeletal muscles for strengthening the integrin-ECM adhesion complex.

Postel, R., Vakeel, P., Topczewski, J., Knoll, R. & Bakkers, J., 2008, In : Developmental Biology. 318, 1, p. 92-101

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Zebrafish mutants in the von Hippel-Lindau tumor suppressor display a hypoxic response and recapitulate key aspects of Chuvash polycythemia

van Rooijen, E., Voest, E. E., Logister, I., Korving, J., Schwerte, T., Schulte-Merker, S., Giles, R. H. & van Eeden, F. J., 2009, In : Blood. 113, 25, p. 6449-6460

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Zebrafish provides a novel model for lymphatic vascular research

Karpanen, T. & Schulte-Merker, S., 2011, In : Methods in Cell Biology. 105, p. 223-238

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Zebrafish prox1b Mutants Develop a Lymphatic Vasculature, and prox1b Does Not Specifically Mark Lymphatic Endothelial Cells

Tao, S., de Witte, M., Bryson-Richardson, R. J., Currie, P. D., Hogan, B. M. & Schulte-Merker, S., 2011, In : PLoS One. 6, 12, p. 28934

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Zebrafish pten genes have overlapping and non-redundant functions in tumorigenesis and embryonic development.

Faucherre, A. F. J. A., Taylor, G. S., Overvoorde, J., Dixon, J. E. & den Hertog, J., 2008, In : Oncogene. 27, 8, p. 1079-1086

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Zebrafish Tie-2 shares a redundant role with Tie-1 in heart development and regulates vessel integrity

Gjini, E., Hekking, L. H., Kuchler, A., Saharinen, P., Wienholds, E., Post, J., Alitalo, K. & Schulte-Merker, S., 2011, In : Disease Models & Mechanisms. 4, 1, p. 57-66

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Zebrafish VEGF receptors: a guideline to nomenclature.

Bussmann, J., Lawson, N., Zon, L. & Schulte-Merker, S., 2008, In : PLoS Genetics. 4, 5

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Zebrafish with mutations in mismatch repair genes develop neurofibromas and other tumors.

Feitsma, H., Kuiper, R. V., Korving, J., Nijman, I. J. & Cuppen, E., 2008, In : Cancer Research. 68, 13, p. 5059-5066

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Zili is required for germ cell differentiation and meiosis in zebrafish.

Houwing, S., Berezikov, E. & Ketting, R. F., 2008, In : EMBO Journal. 27, 20, p. 2702-2711

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ZNRF3 functions in mammalian sex determination by inhibiting canonical WNT signaling

Harris, A., Siggers, P., Corrochano, S., Warr, N., Sagar, D., Grimes, D. T., Suzuki, M., Burdine, R. D., Cong, F., Koo, B-K., Clevers, H., Stévant, I., Nef, S., Wells, S., Brauner, R., Ben Rhouma, B., Belguith, N., Eozenou, C., Bignon-Topalovic, J., Bashamboo, A. & 2 others, McElreavey, K. & Greenfield, A., 22 May 2018, In : Proceedings of the National Academy of Sciences of the United States of America. 115, 21, p. 5474-5479 6 p.

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α-catenin cytomechanics--role in cadherin-dependent adhesion and mechanotransduction

Barry, A. K., Tabdili, H., Muhamed, I., Wu, J., Shashikanth, N., Gomez, G. A., Yap, A. S., Gottardi, C. J., de Rooij, J., Wang, N. & Leckband, D. E., 15 Apr 2014, In : Journal of Cell Science. 127, Pt 8, p. 1779-91 13 p.

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αE-catenin-dependent mechanotransduction is essential for proper convergent extension in zebrafish

Han, M. K. L., Hoijman, E., Nöel, E., Garric, L., Bakkers, J. & de Rooij, J., 2016, In : Biology Open. 5, 10, p. 1461-1472 12 p.

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β-Cell Stress Shapes CTL Immune Recognition of Preproinsulin Signal Peptide by Posttranscriptional Regulation of Endoplasmic Reticulum Aminopeptidase 1

Thomaidou, S., Kracht, M. J. L., van der Slik, A., Laban, S., de Koning, E. J., Carlotti, F., Hoeben, R. C., Roep, B. O. & Zaldumbide, A., Apr 2020, In : Diabetes. 69, 4, p. 670-680 11 p.

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β-TrCP- and Casein Kinase II-Mediated Degradation of Cyclin F Controls Timely Mitotic Progression

Mavrommati, I., Faedda, R., Galasso, G., Li, J., Burdova, K., Fischer, R., Kessler, B. M., Carrero, Z. I., Guardavaccaro, D., Pagano, M. & D'Angiolella, V., 25 Sep 2018, In : Cell Reports. 24, 13, p. 3404-3412 9 p.

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