forthcoming articles

The following articles are a selection of those recently accepted for publication in Acta Crystallographica Section F: Structural Biology Communications.

See also Forthcoming articles in all IUCr journals.

Accepted 19 February 2025

High-throughput protein crystallography to empower natural product-based drug discovery

High-throughput protein crystallography is used at the heart of a pipeline to accelerate the discovery of bioactive natural products, by capturing these hits with protein crystals directly from unpurified biota samples.

Accepted 19 February 2025

Crystal structure of S-adenosylme­thionine-dependent mycolic acid synthase UmaA from Mycobacterium tuberculosis

The crystal structure of UmaA from Mycobacterium tuberculosis was solved to 1.95 Å in the space group P3221.

Accepted 16 February 2025

Analysis of Burkholderia pseudomallei IspF in complex with sulfa­pyridine, sulfamonomethoxine, ethoxzolamide and acetazolamide

The co-crystal structures of five sulfonamide ligands bound to the active site of the IspF enzyme from B. psuedomallei are reported. The ligands include the drugs ethoxzolamide, acetazolamide, sulfapyridine and sulfamonomethoxine.

Accepted 13 February 2025

The crystal structures of apo and tryptophan-bound tryptophanyl-tRNA synthetase from Neisseria gonorrhoeae

The crystal structures of tryptophanyl-tRNA synthetase from N. gonorrhoeae were solved in both its apo form and in complex with tryptophan to resolutions of 2.25 and 2.5 Å, respectively. These structures reveal conserved catalytic motifs and conformational changes at the active site upon ligand binding. Additionally, structural comparisons suggest that indolmycin may act as a competitive inhibitor, offering potential for antibiotic development.

Accepted 10 February 2025

The structure of the Gemella haemolysans M26 IgA1 protease trypsin-like domain

The 1.75 Å resolution structure of the G. haemolysans M26 IgA1 protease trypsin-like domain is presented. The structural data suggest that the domain exists in an inactive pro-enzyme-like state when in the context of the full-length protein. This putative pro-enzyme may be activated after being N-terminally excised from the larger M26 enzyme structure through the potential stabilization of its S1 pocket and rearrangement of adjacent surface loops.


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