Here you can see a recent cryoEM structure of the catalytic core of human telomerase (PDB code: 9SHY) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #cancer #telomerase #complex #ribonucleoprotein #rna #cryoem
3D Protein Imaging
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Here you can see a crystal structure of the substrate promiscuous cytochrome P450 RufO from Streptomyces atratus (PDB code: 9M47) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #cytochrome #antibiotic #streptomyces #synthetic #chemistry #xray
Here you can see a cryoEM structure of the Escherichia coli TamAB complex in non-hybrid barrel state (PDB code: 9XDD) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #membrane #homeostasis #escherichia #host-pathogen #cryoem
Here you can see a cryoEM structure of the rat GluA4 receptor in homotetrameric form (PDB code: 9P9D) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #glua4 #receptor #membrane #brain #development #cryoem #tetramer
Here you can see a crystal structure of SARS main protease complex with CCF0058981 inhibitor (PDB code: 9MBV) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #drugdesign #cadd #sars #protease #mpro #xray
Here you can see a cryoEM structure of the Trm10-tRNA complex from Saccharomyces cerevisiae with tRNA including two Trm10 monomers (PDB code: 9XZS) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #tRNA #Trm10 #complex #translation #saccharomyces #cryoem
Here you can see a crystal structure of the anti-CRISPR AcrIE7 protein from Pseudomonas aeruginosa (PDB code: 9N3X) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #pseudomonas #crispr #anti-crispr #phage #immunity #xray
Here you can see a cryoEM structure of the human of the Apo-state APLNR homodimer (PDB code: 9LQT) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #aplnr #human #g-protein #receptor #cryoem
Here you can see CryoEM structure of the octamer MraZ in complex with 1 box promoter from Mycoplasma genitalium (PDB code: 9SX6) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #octamer #mraz #mycoplasma #dna #binding #promoter #transcription #cryoem
Here you can see a crystal structure of PITP protein covalently bound to microcolin H (PDB code: 9TA5) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #membrane #pitp #microcolin #secondary #metabolism #xray #golgi #calcium
Here you can see a cryoEM structure of filaments formed by PB1 domain of p62 (PDB code: 9HGE) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #proteostasis #pb1 #domain #p62 #filaments #cryoem
Here you have a cryoEM structure of the Bacillus PS3 ATP synthase class 1 (PDB code: 6N2Y) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #bacillus #atp #synthase #membrane #energy #cryoem
Here you can see a crystal structure of hexameric F420-dependent glucose-6-phosphate dehydrogenase (F420-G6PDH) from Thermomicrobium roseum (PDB code: 9HAW) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #dehydrogenase #thermophilic #thermomicrobium #f420 #xray
Here you can see a crystal structure of OspA protein from Borreliella burgdorferi (PDB code: 2FKJ) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #borreliella #ospa #surface #pathogenesis #xray
Here you can see a crystal structure of ZM-097 inhibitor in complex with SARS-CoV-2 main protease MPro (PDB code: 8ZBP) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #protease #mpro #inhibitor #antiviral #sarscov2 #xtal #xray
Here you can see a cryo-EM strucuture of human OAT1 in complex with Probenecid (PDB code: 9KL5) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #probenecid #oat1 #transport #kidney #drug #cryoem #masking
Here you can see a crystal structure of the light-harvesting complex 2 (LH2) from Erythrobacter sanguineus (PDB code: 9LT4) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #erythrobacter #light #harvesting #complex #phototropic #cryoem
Here you can see a cryoEM structure of the outer membrane translocon holo-complex (PDB code: 9IA2) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #escherichia #outermembrane #translocon #cryoem
Here you can see a cryoEM structure of Ku protein from Mycobacterium tuberculosis bound to DNA (PDB code: 9I91) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #ku #mycobacterium #dna #binding #transcription #complex #cryoem
Here you can see a crystal structure of the IDOL RING domain (PDB code: 13TA) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #idol #ring #cholesterol #receptor #xray
Here you have a crystal structure of Secukinumab Fv in complex with human IL-17A (PDB code: 9SFX) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #secukinumab #il17 #antibody #monoclonal #psoriasis #xray
How do ROS drive inflammation? New in Nature Immunology: cofilin-1 binds and inhibits NLRP3 — and ROS disrupts that interaction to unlock inflammasome assembly. 🔓 Illustrations made using #ProteinImager DOI: 10.1038/s41590-026-02490-x #Immunology #NLRP3
This cryo-EM structure reveals that FoxP3 assembles into higher-order multimers that organize four T2G-repeat DNA duplexes into a single bridged complex (PDB code: 9D2L) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #foxp3
Here you can see a cryoEM structure showing how FoxP3 multimers bridge two T4G repeat DNAs (PDB code: 9D2J) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #foxp3 #transcription #multimer #bridge #cryoem
Here you can see a cryoEM structure of Kinesin-14 in nucleotide-free state bound to 14 PF Microtubule (PDB code: 8YY3) Rendering by Francisco J. Enguita (@paco.enguita) made with #ProteinImager #SciArt #molecularart #kinesin14 #microtubule #movement #cytoskeleton #cryoem
Here you can see a crystal structure of the retinol-binding protein II (hCRBPII) (PDB code: 9PSW) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #retinol #binding #xray
Here you can see a cryoEM structure of the bovine RecQL-dsDNA complex (PDB code: 9I16) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #helicase #dna #intermediates #protection #cryoem
Here you can see a crystal structure of Xanthomonas TAL effector in complex to DNA (PDB code: 4OSJ) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #edition #talen #effector #xray
This is the Cryo-EM structure of the IS621 recombinase in complex with bridge RNA, donor DNA, and target DNA in the pre-strand exchange locked state (PDB code: 8WT7) Rendering by Francisco J. Enguita made with #ProteinImager #SciArt #molecularart #cryoem #recombinase #is621 #ecoli #genome #edition
Researchers have created a "tandem" delivery system that successfully penetrates brain tumors to inhibit growth and cut off blood supply with greater precision and safety than standard chemotherapy. Illustrations made by Zsuzsa Baranyai using #ProteinImager