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CryoEM structure of the Salmonella typhimurium RuvAB branch migration motor in complex to a Holliday DNA junction. My tribute to the amazing work from @MarlovitsLab (PDB code: 7PBU) #scivis #proteinimager #molecularart #sciart
https://t.co/AUIIkufD5P
Personal interpretation of a recent cryoEM structure of the Escherichia coli retron-Ec86 (RT-msDNA-RNA) obtained at 3.2 angstrom (PDB code: 7V9U) #sciart #scivis #proteinimager #cryoem #molecularart
https://t.co/tKuZ0dsxai
Examples from our Protein Common Assembly Db now on @biorxiv_bioinfo with @QifangXu. Viable assemblies for all Xray structures (EPPIC, @josemduarte), clustered w/ cryoEM, NMR assemblies by Pfam architectures + stoichiometry+ symmetry + interfaces. @buildmodels @PDBeurope @pdbj_en https://t.co/JJZeZmYwyM
There are 251 new entries in the PDB this week, including this bacteriophage portal structure (7z44) determined to 3.6 A by #cryoEM by @PlevkaLab @CEITEC_Brno. View all new entries at https://t.co/3px0eDQfTf
AI methods can help scientists analyse #cryoEM data.
Find out how researchers from @UniHalle developed a new method to automatically interpret cryo-EM data using open source #AI software including #AlphaFold. #KastritisLab
https://t.co/gmuPFFkLhT
今日話題になってたCryoEM structure of the Caveolin-1 8S complex(PDB: 7SC0)とAF2-multimerの11量体予測構造と重ね合わせてみた
This incredible 3.6 Å structure of the C1 microtubule, along with other associated structures, which compose the central apparatus (CA) of motile cilia have been resolved using #SingleParticle #CryoEM. CA is involved in the regulation of ciliary beating in time and space.
CryoEM structure of BamA folding complex bound to a beta barrel intermediate (PDB code: 7TT5)
https://t.co/LRtY1zZ6xd
Our 42nd #PDB50structures are Tau protein fibrils from Alzheimer's patients, studied using cryoEM. This structure highlights the binding of fluorescent tracer molecule APN-1607: https://t.co/v8AnNpFzAA
Structure of the vaccinia virus transcription initiation complex determined by CryoEM (PDB code: 7AOZ)
New #rendering by @fenguita (Paco.Enguita on Instagram) made with #ProteInimager.
Here is the 3D view: https://t.co/ES1UBdZoYi
#molecularart
#cryoEM 2.4 Å resolution structure of the Light-Harvesting 2 complex from the marine purple bacterium Mch. purpuratum on @ScienceAdvances. Rendered by #ProteinImager user @valentina_VP17. PDBid 6ZXA
New in this week’s #EMDB release, is the first #CryoEM structure of apo #HSPD1 #chaperone complex at 3.5Å. Along with the single ring, #HSPD1 can also form an unusual inverted ring architecture (EMD-11189).
New in this week's PDB release is this 2.4 Angstrom cryoEM structure of the heptameric light-harvesting 2 complex from purple bacteria. Solved by researchers @SheffieldMBB & @UofGlasgow, published in @sciencemagazine Advances. View the structure at https://t.co/CrzO72vS0I
Mechano-channel gymnastics in lipid bilayer by #cryoEM
https://t.co/CcgVYMvYa2?
This ferritin based #Sarscov2 #Vaccine determined by #Cryoem #Singleparticle to 13.5Å successfully elicited neutralizing antibodies in mice after a single dose.
https://t.co/Jb2TaR8jTB
https://t.co/X4iy07Y3eU
@ACSPublications
@Stanford_ChEMH
@ACSCentSci
Lots of info about @PDBeurope today on the #EBIStructural course. The Mol* viewer is pretty neat! #structuralbiology #cryoEM #crystallography
An illustration of the FEI Talos F200C 🔬 @JohnInnesCentre that we use for #cryoEM. Also added a ferritin in from @dsgoodsell’s Illustrate ✏️. #vivelaresolution #science #sciart
New in this week's release is this #cryoEM structure of the #SARSCoV2 RNA polymerase (7btf). Remember, you can find all available PDB data on #COVID19, including ligand binding and interaction sites, at our PDBe-KB COVID-19 data portal: https://t.co/NBFmsXI9VW
This highest polymer count (720!) in this week's release is this #cryoEM structure of zika virus in complex with a human antibody. The assembly is constructed from 3 zika virus envelope proteins and a human antibody. View it in 3D at https://t.co/4sW8BefEXx
We recently released this giant structure of the bacteriophage P68, solved by #cryoEM by the @PlevkaLab. Hear about how bacteriophages work in the tweet below, or view the structure at https://t.co/Z9YGZGHPVc #merrymolecularxmas https://t.co/8eVPw5naI6