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Stefan Jentsch, Ph.D.

Affiliations: 
Max Planck, Martinsried/Munich 
Area:
Ubiquitin
Website:
http://www.biochem.mpg.de/jentsch/Jentsch.html
Google:
"Stefan Jentsch"
Cross-listing: Neurotree - Chemistry Tree

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Publications

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Wilfling F, Lee CW, Erdmann PS, et al. (2020) A Selective Autophagy Pathway for Phase-Separated Endocytic Protein Deposits. Molecular Cell
den Brave F, Cairo LV, Jagadeesan C, et al. (2020) Chaperone-Mediated Protein Disaggregation Triggers Proteolytic Clearance of Intra-nuclear Protein Inclusions. Cell Reports. 31: 107680
Lee CW, Wilfling F, Ronchi P, et al. (2020) Selective autophagy degrades nuclear pore complexes. Nature Cell Biology. 22: 159-166
Heckmann I, Kern MJ, Pfander B, et al. (2019) A SUMO-dependent pathway controls elongating RNA Polymerase II upon UV-induced damage. Scientific Reports. 9: 17914
Höpfler M, Kern MJ, Straub T, et al. (2019) Slx5/Slx8-dependent ubiquitin hotspots on chromatin contribute to stress tolerance. The Embo Journal
Paasch F, den Brave F, Psakhye I, et al. (2017) Failed mitochondrial import and impaired proteostasis trigger SUMOylation of mitochondrial proteins. The Journal of Biological Chemistry
Lu K, den Brave F, Jentsch S. (2017) Pathway choice between proteasomal and autophagic degradation. Autophagy. 0
Karaduman R, Chanarat S, Pfander B, et al. (2017) Error-Prone Splicing Controlled by the Ubiquitin Relative Hub1. Molecular Cell
Lademann CA, Renkawitz J, Pfander B, et al. (2017) The INO80 Complex Removes H2A.Z to Promote Presynaptic Filament Formation during Homologous Recombination. Cell Reports. 19: 1294-1303
Lu K, den Brave F, Jentsch S. (2017) Receptor oligomerization guides pathway choice between proteasomal and autophagic degradation. Nature Cell Biology
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