Jan Tebbe
Bayer Corporation
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Publication
Featured researches published by Jan Tebbe.
Brain | 2014
Simon J. Henderson; Christin Andersson; Rajesh Narwal; Juliette Janson; Tom Goldschmidt; Paulina Appelkvist; Anna Bogstedt; Ann-Charlott Steffen; Ulrich Haupts; Jan Tebbe; Per Ola Freskgård; Lutz Jermutus; Matthew Burrell; Susan B. Fowler; Carl Webster
Lowering levels of peripheral amyloid-β has been proposed as a strategy to reduce plaques in patients with Alzheimer’s disease. Henderson et al. test a modified version of the amyloid-degrading enzyme neprilysin in rats, monkeys and Tg2576 mice. Levels of amyloid-β were reduced in the bloodstream, but not in the CNS.
PLOS ONE | 2014
Carl Webster; Matthew Burrell; Lise-Lotte Olsson; Susan B. Fowler; Sarah Digby; Alan Sandercock; Arjan Snijder; Jan Tebbe; Ulrich Haupts; Joanna Grudzinska; Lutz Jermutus; Christin Andersson
Neprilysin is a transmembrane zinc metallopeptidase that degrades a wide range of peptide substrates. It has received attention as a potential therapy for Alzheimer’s disease due to its ability to degrade the peptide amyloid beta. However, its broad range of peptide substrates has the potential to limit its therapeutic use due to degradation of additional peptides substrates that tightly regulate many physiological processes. We sought to generate a soluble version of the ectodomain of neprilysin with improved activity and specificity towards amyloid beta as a potential therapeutic for Alzheimer’s disease. Extensive amino acid substitutions were performed at positions surrounding the active site and inner surface of the enzyme and variants screened for activity on amyloid beta 1–40, 1–42 and a variety of other physiologically relevant peptides. We identified several mutations that modulated and improved both enzyme selectivity and intrinsic activity. Neprilysin variant G399V/G714K displayed an approximately 20-fold improved activity on amyloid beta 1–40 and up to a 3,200-fold reduction in activity on other peptides. Along with the altered peptide substrate specificity, the mutant enzyme produced a markedly altered series of amyloid beta cleavage products compared to the wild-type enzyme. Crystallisation of the mutant enzyme revealed that the amino acid substitutions result in alteration of the shape and size of the pocket containing the active site compared to the wild-type enzyme. The mutant enzyme offers the potential for the more efficient degradation of amyloid beta in vivo as a therapeutic for the treatment of Alzheimer’s disease.
Archive | 2003
Andre Koltermann; Ulrich Kettling; Ulrich Haupts; Jan Tebbe; Peter Scholz; Jens Pilling; Susanne Werner; Markus Rarbach
Archive | 2006
Andre Koltermann; Ulrich Kettling; Ulrich Haupts; Wayne Coco; Jan Tebbe; Christian Votsmeier; Andreas Scheidig
Archive | 2008
Christian Votsmeier; Uwe Gritzan; Kornelia Kirchner; Michael Strerath; Kerstin Baral; Ulrich Haupts; Wayne Coco; Susanne Steinig; Andreas Scheidig; Klaus Pellengahr; Simone Brückner; Hanna Plittersdorf; Peter Scholz; Jan Tebbe
Archive | 2011
Zhuozhi Wang; Junliang Pan; Joanna Grudzinska; Christian Votsmeier; Jan Tebbe; Joerg Birkenfeld; Nina Wobst; Simone Brueckner; Susanne Steinig; Peter Scholz
Archive | 2005
Andre Koltermann; Ulrich Kettling; Ulrich Haupts; Wayne Coco; Jan Tebbe; Christian Votsmeier; Andreas Scheidig
Archive | 2003
Andre Koltermann; Ulrich c; o Direvo Biotech Ag Kettling; Ulrich Haupts; Jan Tebbe; Peter Scholz; Jens Pilling; Susanne Werner; Markus Rarbach
Archive | 2011
Carl Webster; Lutz Jermutus; Jörg Birkenfeld; Andrea Eicker; Per-Ola Freskgard; Claudia Gotzberger-Schad; Joanna Grudzinska; Ulrich Haupts; Josi Innig; Christoph Mahlert; Andreas Scheidig; Michael Strerath; Jan Tebbe; Johan Per Wallin; Nina Wobst
Archive | 2007
Ulrich Kettling; o Direvo Biotech Ag; Andre Koltermann; Ulrich Haupts; Markus c Rarbach; Jan Tebbe; Christian Votsmeier; Andreas Scheidig; Wayne Coco; Antonio c Da Silva; Oliver Hesse; Peter Scholz; Uwe Gritzan; Georg c Zeidler; Rolf c Kalmbach