We determined the crystal structure of Thr1, the self-standing adenylation domain involved in the nonribosomal-like biosynthesis of free 4-chlorothreonine in Streptomyces sp. OH-5093. Thr1 shows two monomers in the crystallographic asymmetric unit with different relative orientations of the C- and N-terminal subdomains both in the presence of substrates and in the unliganded form. Cocrystallization with substrates, adenosine 5'-triphosphate and l-threonine, yielded one monomer containing the two substrates and the other in complex with l-threonine adenylate, locked in a postadenylation state. Steady-state kinetics showed that Thr1 activates l-Thr and its stereoisomers, as well as d-Ala, l- and d-Ser, albeit with lower efficiency. Modeling of these substrates in the active site highlighted the molecular bases of substrate discrimination. This work provides the first crystal structure of a threonine-activating adenylation enzyme, a contribution to the studies on conformational rearrangement in adenylation domains and on substrate recognition in nonribosomal biosynthesis.

Structure of the adenylation domain thr1 involved in the biosynthesis of 4-chlorothreonine in Streptomyces sp. OH-5093 - protein flexibility and molecular bases of substrate specificity / Scaglione, Antonella; Fullone, Maria Rosaria; Montemiglio, LINDA CELESTE; Parisi, Giacomo; Zamparelli, Carlotta; Vallone, Beatrice; Savino, Carmelinda; Grgurina, Ingeborg. - In: THE FEBS JOURNAL. - ISSN 1742-464X. - STAMPA. - 284:18(2017), pp. 2981-2999. [10.1111/febs.14163]

Structure of the adenylation domain thr1 involved in the biosynthesis of 4-chlorothreonine in Streptomyces sp. OH-5093 - protein flexibility and molecular bases of substrate specificity

SCAGLIONE, ANTONELLA;FULLONE, Maria Rosaria;MONTEMIGLIO, LINDA CELESTE;PARISI, GIACOMO;ZAMPARELLI, Carlotta;VALLONE, Beatrice;Savino, Carmelinda
;
GRGURINA, Ingeborg
2017

Abstract

We determined the crystal structure of Thr1, the self-standing adenylation domain involved in the nonribosomal-like biosynthesis of free 4-chlorothreonine in Streptomyces sp. OH-5093. Thr1 shows two monomers in the crystallographic asymmetric unit with different relative orientations of the C- and N-terminal subdomains both in the presence of substrates and in the unliganded form. Cocrystallization with substrates, adenosine 5'-triphosphate and l-threonine, yielded one monomer containing the two substrates and the other in complex with l-threonine adenylate, locked in a postadenylation state. Steady-state kinetics showed that Thr1 activates l-Thr and its stereoisomers, as well as d-Ala, l- and d-Ser, albeit with lower efficiency. Modeling of these substrates in the active site highlighted the molecular bases of substrate discrimination. This work provides the first crystal structure of a threonine-activating adenylation enzyme, a contribution to the studies on conformational rearrangement in adenylation domains and on substrate recognition in nonribosomal biosynthesis.
2017
adenylation domain; crystallography; kinetic analysis; nonribosomal code; substrate specificity; biochemistry; molecular biology; cell biology
01 Pubblicazione su rivista::01a Articolo in rivista
Structure of the adenylation domain thr1 involved in the biosynthesis of 4-chlorothreonine in Streptomyces sp. OH-5093 - protein flexibility and molecular bases of substrate specificity / Scaglione, Antonella; Fullone, Maria Rosaria; Montemiglio, LINDA CELESTE; Parisi, Giacomo; Zamparelli, Carlotta; Vallone, Beatrice; Savino, Carmelinda; Grgurina, Ingeborg. - In: THE FEBS JOURNAL. - ISSN 1742-464X. - STAMPA. - 284:18(2017), pp. 2981-2999. [10.1111/febs.14163]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1006659
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