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Search Count: 27

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9HS1 image
Crystal Structure Of The Escherichia Coli Nucleosidase Ppnn (Partial Alarmone Form)

9HS3 image
Crystal Structure Of The Escherichia Coli Nucleosidase Ppnn (E264A, Pppgpp Form)

8YPY image
Crystal Strcuture Of Human Phosphoribosyl Pyrophosphate Synthetase2 (Prps2) In Complex With Ligands

8YPZ image
Crystal Strcture Of Human Phosphoribosyl Pyrophosphate Synthetase 1 (Prps1) In Complex With Gdp

8YQ0 image
Crystal Structure Of Human Phosphoribosyl Pyrophosphate Synthetase 1(Prps1) Chimera Swapped With Three Residues From Prps2

9MF6 image
Crystal Structure Of Pyrophosphate-Fructose 6-Phosphate 1-Phosphotransferase 1 (Pfk1) From Trichomonas Vaginalis (Adp/5-O-Phosphono-Alpha-D-Ribofuranose Complex)

9DT7 image
Crystal Structure Of Adp-Ribose Diphosphatase From Klebsiella Pneumoniae (5-O-Phosphono-Alpha-D-Ribofuranose Bound)


8DBF image
Human Prps1 With Adp; Filament Interface

8DBI image
Human Prps1 With Phosphate, Atp, And R5P; Hexamer

8DBJ image
Human Prps1 With Phosphate, Atp, And R5P; Filament Interface

8DBK image
Human Prps1 With Phosphate, Atp, And R5P; Hexamer With Resolved Catalytic Loops

8DBN image
Human Prps1-E307A Engineered Mutation With Phosphate, Atp, And R5P; Hexamer

7XMU image
E.Coli Phosphoribosylpyrophosphate (Prpp) Synthetase Type A Filament Bound With Adp, Pi And R5P

7XMV image
E.Coli Phosphoribosylpyrophosphate (Prpp) Synthetase Type A(Amp/Adp) Filament Bound With Adp, Amp And R5P

6NFE image
Crystal Structure Of Ribose-Phosphate Pyrophosphokinase From Legionella Pneumophila With Bound Amp, Adp, And Ribose-5-Phosphate

5XQA image
Crystal Structure Of Transketolase In Complex With Ribose-5-Phosphate From Pichia Stipitis

5VN4 image
Crystal Structure Of Adenine Phosphoribosyl Transferase From Trypanosoma Brucei In Complex With Amp, Pyrophosphate, And Ribose-5-Phosphate

4XJS image
Human Cd38 Complexed With Inhibitor 1 [6-Fluoro-2-Methyl-4-[(2,3,6-Trichlorobenzyl)Amino]Quinoline-8-Carboxamide]

4L51 image
Crystal Structures Of The Lsrr Proteins Complexed With Phospho-Ai-2 And Its Two Different Analogs Reveal Distinct Mechanisms For Ligand Recognition
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