Area of research
Spectroscopy · Nuclear and High Energy Physics
Research interest
Research interests include Advanced NMR Techniques and Applications, NMR spectroscopy and applications, Solid-state spectroscopy and crystallography, and Protein Structure and Dynamics.
High and fast: NMR protein–proton side-chain assignments at 160 kHz and 1.2 GHz
Molecular elucidation of drug-induced abnormal assemblies of the hepatitis B virus capsid protein by solid-state NMR
Structural conservation of HBV-like capsid proteins over hundreds of millions of years despite the shift from non-enveloped to enveloped life-style
Solid-State NMR Reveals Asymmetric ATP Hydrolysis in the Multidrug ABC Transporter BmrA
Biomolecular solid-state NMR spectroscopy at 1200 MHz: the gain in resolution
Large-Scale Recombinant Production of the SARS-CoV-2 Proteome for High-Throughput and Structural Biology Applications
A pocket-factor–triggered conformational switch in the hepatitis B virus capsid
Temperature-Dependent Solid-State NMR Proton Chemical-Shift Values and Hydrogen Bonding
Spectroscopic glimpses of the transition state of ATP hydrolysis trapped in a bacterial DnaB helicase
Protein NMR Spectroscopy at 150 kHz Magic‐Angle Spinning Continues To Improve Resolution and Mass Sensitivity
ATP Analogues for Structural Investigations: Case Studies of a DnaB Helicase and an ABC Transporter
Dimer Organization of Membrane‐Associated NS5A of Hepatitis C Virus as Determined by Highly Sensitive <sup>1</sup>H‐Detected Solid‐State NMR
Sedimentation Yields Long-Term Stable Protein Samples as Shown by Solid-State NMR
Solid-State NMR for Studying the Structure and Dynamics of Viral Assemblies
Asparagine and Glutamine Side-Chains and Ladders in HET-s(218–289) Amyloid Fibrils Studied by Fast Magic-Angle Spinning NMR
Two new polymorphic structures of human full-length alpha-synuclein fibrils solved by cryo-electron microscopy
Spinning faster: protein NMR at MAS frequencies up to 126 kHz
100 kHz MAS Proton-Detected NMR Spectroscopy of Hepatitis B Virus Capsids
Flexible-to-rigid transition is central for substrate transport in the ABC transporter BmrA from Bacillus subtilis
Protein sample preparation for solid-state NMR investigations
Proton‐Detected Solid‐State NMR of the Cell‐Free Synthesized α‐Helical Transmembrane Protein NS4B from Hepatitis C Virus
Combining Cell-Free Protein Synthesis and NMR Into a Tool to Study Capsid Assembly Modulation
Including Protons in Solid-State NMR Resonance Assignment and Secondary Structure Analysis: The Example of RNA Polymerase II Subunits Rpo4/7
The conformational changes coupling ATP hydrolysis and translocation in a bacterial DnaB helicase
Structural Studies of Self‐Assembled Subviral Particles: Combining Cell‐Free Expression with 110 kHz MAS NMR Spectroscopy
A Substantial Structural Conversion of the Native Monomer Leads to in‐Register Parallel Amyloid Fibril Formation in Light‐Chain Amyloidosis
Solid-state [13C–15N] NMR resonance assignment of hepatitis B virus core protein
Strukturelle Untersuchung subviraler Partikel durch die Kombination von zellfreier Proteinherstellung mit 110 kHz MAS‐NMR‐Spektroskopie
Emerging Structural Understanding of Amyloid Fibrils by Solid-State NMR
Selective labeling and unlabeling strategies in protein solid-state NMR spectroscopy