Michael Knop

Biography
1991 Diploma in Biology and Chemistry, Swiss Federal Institute of Technology 1995 Dr. rer. nat., University of Stuttgart 1996-1997 Postdoc at Max-Planck-Institute for Biochemistry, Munich 1998 Postdoc at The Beatson Institute for Cancer Research in Glasgow 1999-2001 Research Fellow at Max-Planck-Institute for Biochemistry, Munich 2001-2011 Group leader Cell Biology and Biophysics Unit, EMBL, Heidelberg since 2011 Full Professor at the ZMBH of the University of Heidelberg and Groupleader at the DKFZ
Keywords
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Papers
To get the community network started, we have populated the database with almost 2000 papers from PubMed which had clear connections to both systems biology and European institutes. Due to the automated nature of this search many relevant papers may be missing. Registered researchers can correct these mistakes by adding more of their own papers to their profiles, or removing the non-relevant ones.

Live-cell multiphoton fluorescence correlation spectroscopy with an improved large Stokes shift fluorescent protein.
Guan Y et al.
2015
Mol Biol Cell
Protein quality control at the inner nuclear membrane.
Khmelinskii A et al.
2014
Nature
PSFj: know your fluorescence microscope.
Theer P et al.
2014
Nat Methods
PCR Duplication: A One-Step Cloning-Free Method to Generate Duplicated Chromosomal Loci and Interference-Free Expression Reporters in Yeast.
Huber F et al.
2014
PLoS One
A memory system of negative polarity cues prevents replicative aging.
Meitinger F et al.
2014
Cell
Quantification of cytosolic interactions identifies Ede1 oligomers as key organizers of endocytosis.
Boeke D et al.
2014
Mol Syst Biol
Analytical model for macromolecular partitioning during yeast cell division.
Kinkhabwala A et al.
2014
BMC Biophys
Analysis of protein dynamics with tandem fluorescent protein timers.
Khmelinskii A et al.
2014
Methods Mol Biol
Tracking protein turnover and degradation by microscopy: photo-switchable versus time-encoded fluorescent proteins.
Knop M et al.
2014
Open Biol
Spindle pole body-anchored Kar3 drives the nucleus along microtubules from another nucleus in preparation for nuclear fusion during yeast karyogamy.
Gibeaux R et al.
2013
Genes Dev

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