prof. dr. F.M. (Fulvio) Reggiori

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E-mail:
f.m.reggiori umcg.nl

Research

  1. 2020
  2. Jia, J., Claude-Taupin, A., Gu, Y., Choi, S. W., Peters, R., Bissa, B., Mudd, M. H., Allers, L., Pallikkuth, S., Lidke, K. A., Salemi, M., Phinney, B., Mari, M., Reggiori, F., & Deretic, V. (2020). MERIT, a cellular system coordinating lysosomal repair, removal and replacement. Autophagy, 16(8), 1539-1541. https://doi.org/10.1080/15548627.2020.1779451
  3. Jia, J., Claude-Taupin, A., Gu, Y., Choi, S. W., Peters, R., Bissa, B., Mudd, M. H., Allers, L., Pallikkuth, S., Lidke, K. A., Salemi, M., Phinney, B., Mari, M., Reggiori, F., & Deretic, V. (2020). Galectin-3 Coordinates a Cellular System for Lysosomal Repair and Removal. Developmental Cell, 52(1), 69-+. https://doi.org/10.1016/j.devcel.2019.10.025
  4. Zielke, S., Kardo, S., Zein, L., Mari, M., Covarrubias-Pinto, A., Kinzler, M. N., Meyer, N., Stolz, A., Fulda, S., Reggiori, F., Kögel, D., & van Wijk, S. J. L. (2020). ATF4 links ER stress with reticulophagy in glioblastoma cells. Autophagy, 1-17. https://doi.org/10.1080/15548627.2020.1827780
  5. Dinesh Kumar, N., Smit, J. M., & Reggiori, F. (2020). Strategies employed by viruses to manipulate autophagy. In Progress in Molecular Biology and Translational Science (Vol. 172, pp. 203-237). (Progress in molecular biology and translational science). Elsevier. https://doi.org/10.1016/bs.pmbts.2020.01.004
  6. 2019
  7. Landi, A., Mari, M., Kleiser, S., Wolf, T., Gretzmeier, C., Wilhelm, I., Kiritsi, D., Thünauer, R., Geiger, R., Nyström, A., Reggiori, F., Claudinon, J., & Römer, W. (2019). Pseudomonas aeruginosa lectin LecB impairs keratinocyte fitness by abrogating growth factor signalling. Life science alliance, 2(6), [201900422]. https://doi.org/10.26508/lsa.201900422
  8. Hollenstein, D. M., Gómez-Sánchez, R., Ciftci, A., Kriegenburg, F., Mari, M., Torggler, R., Licheva, M., Reggiori, F., & Kraft, C. (2019). Vac8 spatially confines autophagosome formation at the vacuole. Journal of Cell Science, 132(22), [235002]. https://doi.org/10.1242/jcs.235002
  9. Deretic, V., Prossnitz, E., Burge, M., Campen, M. J., Cannon, J., Liu, K. J., Hall, P., Sklar, L. A., Allers, L., Mariscal, L., Garcia, S. A., Baehrecke, E. H., Behrends, C., Cecconi, F., Codogno, P., Chen, G-C., Elazar, Z., Eskelinen, E-L., Fourie, B., ... Klionsky, D. J. (2019). Autophagy, Inflammation, and Metabolism (AIM) Center in its second year. Autophagy, 15(10), 1829-1833. https://doi.org/10.1080/15548627.2019.1634444
  10. Hu, Z., Raucci, S., Jaquenoud, M., Hatakeyama, R., Stumpe, M., Rohr, R., Reggiori, F., De Virgilio, C., & Dengjel, J. (2019). Multilayered Control of Protein Turnover by TORC1 and Atg1. Cell reports, 28(13), 3486-3496.e6. https://doi.org/10.1016/j.celrep.2019.08.069
  11. Barbosa, A. D., Lim, K., Mari, M., Edgar, J. R., Gal, L., Sterk, P., Jenkins, B. J., Koulman, A., Savage, D. B., Schuldiner, M., Reggiori, F., Wigge, P. A., & Siniossoglou, S. (2019). Compartmentalized Synthesis of Triacylglycerol at the Inner Nuclear Membrane Regulates Nuclear Organization. Developmental Cell, 50(6), 755-766.e6. https://doi.org/10.1016/j.devcel.2019.07.009
  12. Zheng, L., Shu, W-J., Li, Y-M., Mari, M., Yan, C., Wang, D., Yin, Z-H., Jiang, W., Zhou, Y., Okamoto, K., Reggiori, F., Klionsky, D. J., Song, Z., & Du, H-N. (2019). The Paf1 complex transcriptionally regulates the mitochondrial-anchored protein Atg32 leading to activation of mitophagy. Autophagy, 16(8), 1366-1379. https://doi.org/10.1080/15548627.2019.1668228
  13. Cui, Y., Parashar, S., Zahoor, M., Needham, P. G., Mari, M., Zhu, M., Chen, S., Ho, H-C., Reggiori, F., Farhan, H., Brodsky, J. L., & Ferro-Novick, S. (2019). A COPII subunit acts with an autophagy receptor to target endoplasmic reticulum for degradation. Science, 365(6448), 53-60. https://doi.org/10.1126/science.aau9263
  14. Di Rienzo, M., Antonioli, M., Fusco, C., Liu, Y., Mari, M., Orhon, I., Refolo, G., Germani, F., Corazzari, M., Romagnoli, A., Ciccosanti, F., Mandriani, B., Pellico, M. T., De La Torre, R., Ding, H., Dentice, M., Neri, M., Ferlini, A., Reggiori, F., ... Fimia, G. M. (2019). Autophagy induction in atrophic muscle cells requires ULK1 activation by TRIM32 through unanchored K63-linked polyubiquitin chains. Science Advances, 5(5), [8857]. https://doi.org/10.1126/sciadv.aau8857
  15. Kraft, C., Boya, P., Codogno, P., Elazar, Z., Eskelinen, E-L., Farres, J., Kirkin, V., Jungbluth, H., Martinez, A., Pless, O., Primard, C., Proikas-Cezanne, T., Simonsen, A., & Reggiori, F. (2019). Driving next-generation autophagy researchers towards translation (DRIVE), an international PhD training program on autophagy. Autophagy, 15(2), 347-351. https://doi.org/10.1080/15548627.2018.1515532
  16. Peeters, J. G. C., Picavet, L. W., Coenen, S. G. J. M., Mauthe, M., Vervoort, S. J., Mocholi, E., de Heus, C., Klumperman, J., Vastert, S. J., Reggiori, F., Coffer, P. J., Mokry, M., & van Loosdregt, J. (2019). Transcriptional and epigenetic profiling of nutrient-deprived cells to identify novel regulators of autophagy. Autophagy, 15(1), 98-112. https://doi.org/10.1080/15548627.2018.1509608
  17. 2018
  18. Tan, J. M. J., Mellouk, N., Osborne, S. E., Ammendolia, D. A., Dyer, D. N., Li, R., Brunen, D., van Rijn, J. M., Huang, J., Czuczman, M. A., Cemma, M. A., Won, A. M., Yip, C. M., Xavier, R. J., MacDuff, D. A., Reggiori, F., Debnath, J., Yoshimori, T., Kim, P. K., ... Brumell, J. H. (2018). An ATG16L1-dependent pathway promotes plasma membrane repair and limits Listeria monocytogenes cell-to-cell spread. Nature Microbiology, 3(12), 1472-1485. https://doi.org/10.1038/s41564-018-0293-5
  19. Janssen, A. F. J., Katrukha, E. A., van Straaten, W., Verlhac, P., Reggiori, F., & Kapitein, L. C. (2018). Probing aggrephagy using chemically-induced protein aggregates. Nature Communications, 9(1), 4245. [4245]. https://doi.org/10.1038/s41467-018-06674-4
  20. González Montoro, A., Auffarth, K., Hönscher, C., Bohnert, M., Becker, T., Warscheid, B., Reggiori, F., van der Laan, M., Fröhlich, F., & Ungermann, C. (2018). Vps39 Interacts with Tom40 to Establish One of Two Functionally Distinct Vacuole-Mitochondria Contact Sites. Developmental Cell, 45(5), 621-636.e7. https://doi.org/10.1016/j.devcel.2018.05.011
  21. Shai, N., Yifrach, E., van Roermund, C. W. T., Cohen, N., Bibi, C., IJlst, L., Cavellini, L., Meurisse, J., Schuster, R., Zada, L., Mari, M. C., Reggiori, F. M., Hughes, A. L., Escobar-Henriques, M., Cohen, M. M., Waterham, H. R., Wanders, R. J. A., Schuldiner, M., & Zalckvar, E. (2018). Systematic mapping of contact sites reveals tethers and a function for the peroxisome-mitochondria contact. Nature Communications, 9(1), [1761]. https://doi.org/10.1038/s41467-018-03957-8
  22. Eisenberg-Bord, M., Mari, M., Weill, U., Rosenfeld-Gur, E., Moldavski, O., Castro, I. G., Soni, K. G., Harpaz, N., Levine, T. P., Futerman, A. H., Reggiori, F., Bankaitis, V. A., Schuldiner, M., & Bohnert, M. (2018). Identification of seipin-linked factors that act as determinants of a lipid droplet subpopulation. The Journal of Cell Biology, 217(1), 269-282. https://doi.org/10.1083/jcb.201704122
  23. Deretic, V., Prossnitz, E., Burge, M., Campen, M. J., Cannon, J., Liu, K. J., Sklar, L. A., Allers, L., Garcia, S. A., Baehrecke, E. H., Behrends, C., Cecconi, F., Codogno, P., Chen, G-C., Elazar, Z., Eskelinen, E-L., Fourie, B., Gozuacik, D., Hong, W., ... Klionsky, D. J. (2018). Autophagy, Inflammation, and Metabolism (AIM) Center of Biomedical Research Excellence: Supporting the next generation of autophagy researchers and fostering international collaborations. Autophagy, 14(6), 925-929. https://doi.org/10.1080/15548627.2018.1465784
  24. 2017
  25. Sánchez-Wandelmer, J., Kriegenburg, F., Rohringer, S., Schuschnig, M., Gómez-Sánchez, R., Zens, B., Abreu, S., Hardenberg, R., Hollenstein, D., Gao, J., Ungermann, C., Martens, S., Kraft, C., & Reggiori, F. (2017). Atg4 proteolytic activity can be inhibited by Atg1 phosphorylation. Nature Communications, 8, [295]. https://doi.org/10.1038/s41467-017-00302-3
  26. Galluzzi, L., Baehrecke, E. H., Ballabio, A., Boya, P., Bravo-San Pedro, J. M., Cecconi, F., Choi, A. MK., Chu, C. T., Codogno, P., Colombo, M. I., Cuervo, A. M., Debnath, J., Deretic, V., Dikic, I., Eskelinen, E-L., Fimia, G. M., Fulda, S., Gewirtz, D. A., Green, D. R., ... Kroemer, G. (2017). Molecular definitions of autophagy and related processes. The EMBO Journal, 36(13), 1811-1836. https://doi.org/10.15252/embj.201796697
  27. Grumati, P., Morozzi, G., Hölper, S., Mari, M., Harwardt, M-L. I. E., Yan, R., Müller, S., Reggiori, F., Heilemann, M., & Dikic, I. (2017). Full length RTN3 regulates turnover of tubular endoplasmic reticulum via selective autophagy. eLife, 6, [25555]. https://doi.org/10.7554/eLife.25555
  28. Abreu, S., Kriegenburg, F., Gómez-Sánchez, R., Mari, M., Sanchez-Wandelmer, J., Rasmussen, M. S., Guimaraes, R. S., Zens, B., Schuschnig, M., Hardenberg, R., Peter, M., Johansen, T., Kraft, C., Martens, S., & Reggiori, F. (2017). Conserved Atg8 recognition sites mediate Atg4 association with autophagosomal membranes and Atg8 deconjugation. Embo Reports, 18(5), 765-780. https://doi.org/10.15252/embr.201643146
  29. Gomez-Sanchez, R., Sanchez-Wandelmer, J., & Reggiori, F. (2017). Monitoring the Formation of Autophagosomal Precursor Structures in Yeast Saccharomyces cerevisiae. In L. Galluzzi, J. M. Bravo-San Pedro, & G. Kroemer (Eds.), Molecular Characterization of Autophagic Responses, Part B (Vol. 588, pp. 323-365). (Methods in Enzymology; Vol. 588). Academic Press. https://doi.org/10.1016/bs.mie.2016.09.085
  30. Arlt, H., & Reggiori, F. (2017). The Role of Atg9 in Yeast Autophagy. In Autophagy: Cancer, Other Pathologies, Inflammation, Immunity, Infection, and Aging (pp. 181-192). Elsevier. https://doi.org/10.1016/B978-0-12-805420-8.00008-1
  31. 2016
  32. Harner, M. E., Unger, A-K., Geerts, W. J. C., Mari, M., Izawa, T., Stenger, M., Geimer, S., Reggiori, F., Westermann, B., & Neupert, W. (2016). An evidence based hypothesis on the existence of two pathways of mitochondrial crista formation. eLife, 5, [18853]. https://doi.org/10.7554/eLife.18853
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ID: 14918690