α-Hydrazino acids inhibit pyridoxal phosphate-dependent decarboxylases via “catalytically correct” ketoenamine tautomers: A special motif for chemical biology and drug discovery?
Baine J.M., Duhoo Y., Doukov T., Desfosses A., Bisello G., Beio M.L., Bauer O., Perduca M., Bacia-Verloop M., Bertoldi M., Phillips R.S., Gutsche I., Berkowitz D.B.,
ACS Catalysis 15, 8204-8218 (2025)
Incorporation of pyridoxal-5′-phosphate into the apoenzyme: A structural study of D-amino acid transaminase from Haliscomenobacter hydrossis
Bakunova A.K., Matyuta I.O., Minyaev M.E., Boyko K.M., Popov V.O., Bezsudnova E.Y.,
Biochimica et Biophysica Acta (BBA) - Proteins & Proteomics 1873, 141056-1-141056-9 (2025)
Proteorhodopsin insights into the molecular mechanism of vectorial proton transport
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Science Advances 11, eadu5303-1-eadu5303-21 (2025)
Crystal structures of the mycolic acid methyl transferase 1 (MmaA1) from Mycobacterium tuberculosis in the apo-form and in complex with different cofactors reveal unique features for substrate binding
Chaudhary B., Kobakhidze G., Wachelder L., Mazumdar P.A., Dong G., Madhurantakam C.,
Journal of Biomolecular Structure and Dynamics , epub (2025)
Nitrogenase structural evolution across Earth’s history
Cuevas-Zuviria B., Detemple F., Amritkar K., Garcia A.K., Seefeldt L.C., Einsle O., Kacar B.,
eLife 14, RP105613-1-RP10561328 (2025)
Molecular structure and enzymatic mechanism of the human collagen hydroxylysine galactosyltransferase GLT25D1/COLGALT1
De Marco M., Rai S., Scietti L., Mattoteia D., Liberi S., Moroni E., Pinnola A., Vetrano A., Iacobucci C., Santambrogio C., Colombo G., Forneris F.,
Nature Communications 16, 3624-1-3624-17 (2025)