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(Show all)CryoEM structure of the transketolase ANIP from Streptomyces hygrospinosus
ICP1 Csy-dsDNA-Cas1-Cas2/3 complex (fully assembled form) composited structure with C1 symmetry
Trimeric prM/E spike of Tick-borne encephalitis virus immature particle
Cryo-electron tomogram of small unilamellar vesicles decorated with poliovirus protein 2C
Archaellum filament from the Halobacterium salinarum deltaAgl27 strain
Cryo EM map of the type 2A polymorph of alpha-synuclein at pH 7.0.
Tick-borne encephalitis virus (strain Neudoerfl) immature particle
Archaellum filament from the Halobacterium salinarum deltaAgl26 strain
Structure of human terminal uridylyltransferase 4 (TUT4, ZCCHC11) in complex with pre-let7g miRNA and Lin28A
Subtomogram average of 80S ribosomes in S. cerevisiae under acute glucose starvation
Cryo EM structure of the type 3B polymorph of alpha-synuclein at low pH.
DIV 1 hippocampal neuron (weighted back-projection and greyscale segmentation)
MicroED structure of SARS-CoV-2 main protease (MPro/3CLPro) with missing cone eliminated by suspended drop
ApoRF3 bound to an E. coli non-rotated ribosome termination complex, from focused classification and refinement (State I-B)
Cryo-EM structure of an E. coli non-rotated ribosome termination complex bound with RF1, P- and E-site tRNAPhe (State I-A)
RF3-GDPCP bound to an E. coli rotated ribosome, from focused classification and refinement (State II-C)
Cryo-EM structure of an E. coli non-rotated ribosome termination complex bound with RF1, P- and E-site tRNAPhe (State II-D)
Cryo-EM structure of an E. coli non-rotated ribosome termination complex bound with apoRF3, RF1, P- and E-site tRNAPhe (State I-B)
Cryo-EM structure of an E. coli non-rotated ribosome termination complex bound with RF3-GDPCP, RF1, P- and E-site tRNAPhe (Composite state II-A)
Cryo-EM structure of an E. coli non-rotated ribosome termination complex bound with RF3-GDPCP, RF1, P- and E-site tRNAPhe (State II-A)
Cryo-EM structure of an E. coli rotated ribosome bound with RF3-GDPCP and p/E-tRNAPhe (Composite state II-C)
Phosphorylated, ATP-bound, E1371Q human cystic fibrosis transmembrane conductance regulator (E1371Q-CFTR)
Cryo-EM structure of alpha5beta1 integrin in complex with NeoNectin
RF3-GDPCP bound to an E. coli rotated ribosome, from focused classification and refinement (State II-B)
Cryo-EM structure of an E. coli non-rotated ribosome termination complex bound with apoRF3, RF1, P- and E-site tRNAPhe (Composite state I-B)
Cryo-EM structure of an E. coli rotated ribosome bound with RF3-GDPCP and p/E-tRNAPhe (State II-C)
Cryo-EM structure of an E. coli rotated ribosome bound with RF3-GDPCP and p/E-tRNAPhe (Composite state II-B)
Complex of NPR1 ectodomain and REGN5381 Fab in an active-like state with no ANP bound
Cryo-EM structure of an E. coli rotated ribosome bound with RF3-GDPCP and p/E-tRNAPhe (State II-B)
Phosphorylated, ATP-bound, inhibitor 172-bound E1371Q human cystic fibrosis transmembrane conductance regulator
RF3-GDPCP bound to an E. coli non-rotated ribosome termination complex, from focused classification and refinement (State II-A)
Complex of NPR1 ectodomain with ANP plus an allosteric activating antibody, REGN5381
Structure of HCoV-HKU1C spike in the functionally anchored-1up conformation with 1TMPRSS2
Cryo-EM structure of human ABCC4 in complex with ANP-bound in NBD1 and METHOTREXATE
Structure of HCoV-HKU1C spike in the functionally anchored-3up conformation with 3TMPRSS2
Structure of HCoV-HKU1C spike in the functionally anchored-2up conformation with 2TMPRSS2
Structure of HCoV-HKU1A spike in the functionally anchored-3up conformation with 3TMPRSS2
Structure of the sea urchin spSLC9C1 in state-2 w/o cAMP protomer
Local structure of HCoV-HKU1C spike in complex with TMPRSS2 and glycan
Structure of HCoV-HKU1C spike in the functionally anchored-3up conformation with 2TMPRSS2
Local structure of HCoV-HKU1A spike in complex with TMPRSS2 and glycan
Structure of HCoV-HKU1C spike in the glycan-activated-closed conformation
Structure of HCoV-HKU1C spike in the glycan-activated-2up conformation
Structure of HCoV-HKU1C spike in the glycan-activated-1up conformation
Structure of HCoV-HKU1C spike in the glycan-activated-3up conformation
Structure of HCoV-HKU1C spike in the inactive-closed conformation
ICP1 Csy-dsDNA-Cas1-Cas2/3 complex (fully assembled form), C2 symmetry