Tag: Protein structure and dynamics

Tag results

Format

Format
  • Application note (10)
  • Paper (9)
  • Article (6)
  • Preprint (4)
  • Ebook (3)
  • Press Release (3)
  • Technical note (3)
  • Webinar (2)
  • Video (1)
Applications
  • Protein structure and dynamics (28)
  • Enzymes (23)
  • DNA structure (22)
  • Replication (22)
  • Protein-DNA interactions (21)
  • Protein-RNA interactions (21)
  • Membrane proteins and receptors (20)
  • RNA structure (20)
  • Disordered proteins (19)
  • DNA repair (19)
  • Transcription (17)
  • DNA organisation (16)
  • Molecular motors (16)
  • Quadruplexes / higher order structures (16)
  • DNA origami (15)
  • Riboswitches (15)
  • Antibody-ligand interactions (14)
  • DNA editing (14)
  • Chromatin (13)
  • Phase separation (13)
  • Protein aggregation (13)
  • R-loops (13)
  • PTM detection (12)
  • Ternary complexes, protacs, glues (12)

Technology

Technology
  • smFRET (32)
  • FCS (12)
  • FCCS (5)

Year

Year

Author

Author

Author 2

Author 2

Tags

Tags
As smFRET turns 30, trace its evolution from a ground-breaking physics concept into the democratised, high-throughput benchtop tool that is transforming the life sciences and modern drug discovery.
As smFRET turns 30, trace its evolution from a ground-breaking physics concept into the democratised, high-throughput benchtop tool that is transforming the life sciences and modern drug discovery.
As smFRET turns 30, trace its evolution from a ground-breaking physics concept into the democratised, high-throughput benchtop tool that is transforming the life sciences and modern drug discovery.
As smFRET turns 30, trace its evolution from a ground-breaking physics concept into the democratised, high-throughput benchtop tool that is transforming the life sciences and modern drug discovery.
As smFRET turns 30, trace its evolution from a ground-breaking physics concept into the democratised, high-throughput benchtop tool that is transforming the life sciences and modern drug discovery.
As smFRET turns 30, trace its evolution from a ground-breaking physics concept into the democratised, high-throughput benchtop tool that is transforming the life sciences and modern drug discovery.
As smFRET turns 30, trace its evolution from a ground-breaking physics concept into the democratised, high-throughput benchtop tool that is transforming the life sciences and modern drug discovery.
As smFRET turns 30, trace its evolution from a ground-breaking physics concept into the democratised, high-throughput benchtop tool that is transforming the life sciences and modern drug discovery.
As smFRET turns 30, trace its evolution from a ground-breaking physics concept into the democratised, high-throughput benchtop tool that is transforming the life sciences and modern drug discovery.
As smFRET turns 30, trace its evolution from a ground-breaking physics concept into the democratised, high-throughput benchtop tool that is transforming the life sciences and modern drug discovery.
As smFRET turns 30, trace its evolution from a ground-breaking physics concept into the democratised, high-throughput benchtop tool that is transforming the life sciences and modern drug discovery.
As smFRET turns 30, trace its evolution from a ground-breaking physics concept into the democratised, high-throughput benchtop tool that is transforming the life sciences and modern drug discovery.