Area of research
Structural Biology · Surfaces, Coatings and Films
Research interest
Research focused on Focused ion beam and Proteasome, with related work in Cryo-electron microscopy, Cryo-electron tomography, G protein-coupled receptor. Notable publications include 'Visualizing the molecular sociology at the HeLa cell nuclear periphery', 'mTORC1 Controls Phase Separation and the Biophysical Properties of the Cytoplasm by Tuning Crowding', and 'Volta potential phase plate for in-focus phase contrast transmission electron microscopy'.
Making plant tissue accessible for cryo-electron tomography
Making plant tissue accessible for cryo-electron tomography
Preparing samples from whole cells using focused-ion-beam milling for cryo-electron tomography
Direct visualization of degradation microcompartments at the ER membrane
Expanded Coverage of the 26S Proteasome Conformational Landscape Reveals Mechanisms of Peptidase Gating
mTORC1 Controls Phase Separation and the Biophysical Properties of the Cytoplasm by Tuning Crowding
Structure of the adenosine-bound human adenosine A1 receptor–Gi complex
Cryo-EM structure of the active, Gs-protein complexed, human CGRP receptor
Expanded Coverage of the 26S Proteasome Conformational Landscape Reveals Mechanisms of Peptidase Gating
Bacterial encapsulins as orthogonal compartments for mammalian cell engineering
Structural insights into the functional cycle of the ATPase module of the 26S proteasome
Dissecting the molecular organization of the translocon-associated protein complex
Structures of the cyanobacterial circadian oscillator frozen in a fully assembled state
Visualizing the molecular sociology at the HeLa cell nuclear periphery
Structure of the human 26S proteasome at a resolution of 3.9 Å
Cryo-focused-ion-beam applications in structural biology
Volta potential phase plate for in-focus phase contrast transmission electron microscopy
Incomplete pneumolysin oligomers form membrane pores
A Tailored <i>galK</i> Counterselection System for Efficient Markerless Gene Deletion and Chromosomal Tagging in Magnetospirillum gryphiswaldense
Opening windows into the cell: focused-ion-beam milling for cryo-electron tomography
The magnetosome proteins <scp>MamX</scp>, <scp>MamZ</scp> and <scp>MamH</scp> are involved in redox control of magnetite biomineralization in <i><scp>M</scp>agnetospirillum gryphiswaldense</i>
Analysis of Magnetosome Chains in Magnetotactic Bacteria by Magnetic Measurements and Automated Image Analysis of Electron Micrographs
Electron Microscopy of Biological Materials at the Nanometer Scale