Hanna Lammertse, MSc

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Synaptic Transmission Medicine & Life Sciences
SNARE Proteins Chemical Compounds
Phosphorylation Chemical Compounds
Neurons Chemical Compounds
Neuronal Plasticity Medicine & Life Sciences
src-Family Kinases Medicine & Life Sciences
Synaptic Vesicles Medicine & Life Sciences
Plasticity Chemical Compounds

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Research Output 2018 2019

A Single-Cell Model for Synaptic Transmission and Plasticity in Human iPSC-Derived Neurons

Meijer, M., Rehbach, K., Brunner, J. W., Classen, J. A., Lammertse, H. C. A., van Linge, L. A., Schut, D., Krutenko, T., Hebisch, M., Cornelisse, L. N., Sullivan, P. F., Peitz, M., Toonen, R. F., Brüstle, O. & Verhage, M., 14 May 2019, In : Cell Reports. 27, 7, p. 2199-2211.e6

Research output: Contribution to JournalArticleAcademicpeer-review

Open Access
Neuronal Plasticity
Synaptic Transmission

Tyrosine phosphorylation of Munc18-1 inhibits synaptic transmission by preventing SNARE assembly

Meijer, M., Dörr, B., Lammertse, H. C. A., Blithikioti, C., van Weering, J. R. T., Toonen, R. F. G., Söllner, T. H. & Verhage, M., 17 Jan 2018, In : EMBO Journal. 37, 2, p. 300-320 21 p.

Research output: Contribution to JournalArticleAcademicpeer-review

Open Access
SNARE Proteins
src-Family Kinases
Synaptic Vesicles
Synaptic Transmission