Feline Lindhout

3 Centrosome-mediated microtubule remodeling during axon formation in human iPSC-derived neurons 97 Kole, M. H., S. U. Ilschner, B. M. Kampa, S. R. Williams, P. C. Ruben, and G. J. Stuart. 2008. ‘Action potential generation requires a high sodium channel density in the axon initial segment’, Nat Neurosci, 11: 178-86. Kuijpers, M., D. van de Willige, A. Freal, A. Chazeau, M. A. Franker, J. Hofenk, R. J. Rodrigues, L. C. Kapitein, A. Akhmanova, D. Jaarsma, and C. C. Hoogenraad. 2016. ‘Dynein Regulator NDEL1 Controls Polarized Cargo Transport at the Axon Initial Segment’, Neuron, 89: 461- 71. Lancaster, M. A., M. Renner, C. A. Martin, D. Wenzel, L. S. Bicknell, M. E. Hurles, T. Homfray, J. M. Penninger, A. P. Jackson, and J. A. Knoblich. 2013. ‘Cerebral organoids model human brain development and microcephaly’, Nature, 501: 373-9. Leterrier, C. 2018. ‘The Axon Initial Segment: An Updated Viewpoint’, J Neurosci, 38: 2135-45. Linaro, D., B. Vermaercke, R. Iwata, A. Ramaswamy, B. Libe-Philippot, L. Boubakar, B. A. Davis, K. Wierda, K. Davie, S. Poovathingal, P. A. Penttila, A. Bilheu, L. De Bruyne, D. Gall, K. K. Conzelmann, V. Bonin, and P. Vanderhaeghen. 2019. ‘Xenotransplanted Human Cortical Neurons Reveal Species-Specific Development and Functional Integration into Mouse Visual Circuits’, Neuron, 104: 972-86.e6. Lindhout, F. W., Y. Cao, J. T. Kevenaar, A. Bodzeta, R. Stucchi, M. M. Boumpoutsari, E. A. Katrukha, M. Altelaar, H. D. MacGillavry, and C. C. Hoogenraad. 2019. ‘VAP-SCRN1 interaction regulates dynamic endoplasmic reticulum remodeling and presynaptic function’, Embo j, 38: e101345. Lindhout, F.W., R. Kooistra, S. Portegies, L.J. Herstel, R. Stucchi, B.L. Snoek, M. Altelaar, H.D. MacGillavry, C.J. Wierenga, C.C. Hoogenraad. 2020. ‘Quantitative mapping of transcriptome and proteome dynamics during polarization of human iPSC-derived neurons’, BioRxiv doi: https://doi.org/10.1101/2020.04.21.052498 Lois, C., E. J. Hong, S. Pease, E. J. Brown, and D. Baltimore. 2002. ‘Germline transmission and tissue-specific expression of transgenes delivered by lentiviral vectors’, Science, 295: 868- 72. Martin, M., A. Veloso, J. Wu, E. A. Katrukha, and A. Akhmanova. 2018. ‘Control of endothelial cell polarity and sprouting angiogenesis by non-centrosomal microtubules’, Elife, 7. Meka, D. P., R. Scharrenberg, and F. Calderon de Anda. 2020. ‘Emerging roles of the centrosome in neuronal development’, Cytoskeleton (Hoboken). Meka, D. P., R. Scharrenberg, B. Zhao, O. Kobler, T. König, I. Schaefer, B. Schwanke, S. Klykov, M. Richter, D. Eggert, S. Windhorst, C. G. Dotti, M. R. Kreutz, M. Mikhaylova, and F. Calderon de Anda. 2019. ‘Radial somatic F-actin organization affects growth cone dynamics during early neuronal development’, EMBO Rep, 20: e47743. Mennella, V., B. Keszthelyi, K. L. McDonald, B. Chhun, F. Kan, G. C. Rogers, B. Huang, and D. A. Agard. 2012. ‘Subdiffraction-resolution fluorescence microscopy reveals a domain of the centrosome critical for pericentriolar material organization’, Nat Cell Biol, 14: 1159-68. Moritz, M., M. B. Braunfeld, V. Guenebaut, J. Heuser, and D. A. Agard. 2000. ‘Structure of the gamma-tubulin ring complex: a template for microtubule nucleation’, Nat Cell Biol, 2: 365- 70. Nano, M., and R. Basto. 2017. ‘Consequences of Centrosome Dysfunction During Brain Development’, Adv Exp Med Biol, 1002: 19-45. Otani, T., M. C. Marchetto, F. H. Gage, B. D. Simons, and F. J. Livesey. 2016. ‘2D and 3D Stem Cell

RkJQdWJsaXNoZXIy ODAyMDc0