nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
Advances and applications of microcrystal electron diffraction (MicroED)
|
Haymaker, Alison |
|
|
84 |
C |
p. |
artikel |
2 |
AI for targeted polypharmacology: The next frontier in drug discovery
|
Cichońska, Anna |
|
|
84 |
C |
p. |
artikel |
3 |
Allosteric communication and signal transduction in proteins
|
Wu, Nan |
|
|
84 |
C |
p. |
artikel |
4 |
Allosteric drugs: New principles and design approaches
|
Tee, Wei-Ven |
|
|
84 |
C |
p. |
artikel |
5 |
Allo-targeting of the kinase domain: Insights from in silico studies and comparison with experiments
|
Lee, Ji Young |
|
|
84 |
C |
p. |
artikel |
6 |
Applications of cryo-EM in drug development for STING
|
Bai, Xiao-chen |
|
|
84 |
C |
p. |
artikel |
7 |
A review of computational methods for predicting cancer drug response at the single-cell level through integration with bulk RNAseq data
|
Maeser, Danielle |
|
|
84 |
C |
p. |
artikel |
8 |
Artificial intelligence approaches for molecular representation in drug response prediction
|
Lin, Cui-Xiang |
|
|
84 |
C |
p. |
artikel |
9 |
Bonds and bytes: The odyssey of structural biology
|
Hoff, S.E. |
|
|
84 |
C |
p. |
artikel |
10 |
Circadian regulation of physiology by disordered protein-protein interactions
|
Sutton, Lucas B. |
|
|
84 |
C |
p. |
artikel |
11 |
Combining per-particle cryo-ET and cryo-EM single particle analysis to elucidate heterogeneous DNA-protein organization
|
Palao III, Leon |
|
|
84 |
C |
p. |
artikel |
12 |
Commonly asked questions about transcriptional activation domains
|
Udupa, Aditya |
|
|
84 |
C |
p. |
artikel |
13 |
Dynamics and interactions of intrinsically disordered proteins
|
Arai, Munehito |
|
|
84 |
C |
p. |
artikel |
14 |
Editorial Board
|
|
|
|
84 |
C |
p. |
artikel |
15 |
Editorial overview: Biophysical methods: Multiple structures of proteins underpin their biological functions
|
Gutsche, Irina |
|
|
84 |
C |
p. |
artikel |
16 |
Editorial overview: Cryogenic electron microscopy (cryoEM)
|
Rohou, Alexis |
|
|
84 |
C |
p. |
artikel |
17 |
Editorial overview: ‘The amazing power of physics to provide chemical insight into catalysis and regulation’ … something better …
|
Parker, Emily J. |
|
|
84 |
C |
p. |
artikel |
18 |
Generative AI for graph-based drug design: Recent advances and the way forward
|
Garg, Vikas |
|
|
84 |
C |
p. |
artikel |
19 |
How the ribosome shapes cotranslational protein folding
|
Samatova, Ekaterina |
|
|
84 |
C |
p. |
artikel |
20 |
Integrative approaches for characterizing protein dynamics: NMR, CryoEM, and computer simulations
|
Zadorozhnyi, Roman |
|
|
84 |
C |
p. |
artikel |
21 |
Mechanisms of allostery at the viral surface through the eyes of molecular simulation
|
Samsudin, Firdaus |
|
|
84 |
C |
p. |
artikel |
22 |
Modelling the assembly and flexibility of antibody structures
|
Guo, Dongjun |
|
|
84 |
C |
p. |
artikel |
23 |
Molecular simulations integrated with experiments for probing the interaction dynamics and binding mechanisms of intrinsically disordered proteins
|
Ghosh, Catherine |
|
|
84 |
C |
p. |
artikel |
24 |
Multivalency emerges as a common feature of intrinsically disordered protein interactions
|
Sipko, Emily L. |
|
|
84 |
C |
p. |
artikel |
25 |
Overcoming challenges in structural biology with integrative approaches and nanobody-derived technologies
|
Condeminas, Miriam |
|
|
84 |
C |
p. |
artikel |
26 |
Protein dynamics underlying allosteric regulation
|
Astore, Miro A. |
|
|
84 |
C |
p. |
artikel |
27 |
Regulation of tau by peptidyl-prolyl isomerases
|
Zhuang, Shannon |
|
|
84 |
C |
p. |
artikel |
28 |
RNA polymerase II elongation factors use conserved regulatory mechanisms
|
Chen, Ying |
|
|
84 |
C |
p. |
artikel |
29 |
Table of contents
|
|
|
|
84 |
C |
p. |
artikel |
30 |
Tandem-repeat proteins conformational mechanics are optimized to facilitate functional interactions and complexations
|
Ventura, Carlos |
|
|
84 |
C |
p. |
artikel |
31 |
Understanding the heterogeneity intrinsic to protein folding
|
Bhatia, Sandhya |
|
|
84 |
C |
p. |
artikel |