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7TEN

Crystal structure of the Listeria monocytogenes GS-Met-Sox-P- ADP complex to 3.5 Angstrom

This is a non-PDB format compatible entry.
Summary for 7TEN
Entry DOI10.2210/pdb7ten/pdb
DescriptorGlutamine synthetase, ADENOSINE-5'-DIPHOSPHATE, L-METHIONINE-S-SULFOXIMINE PHOSPHATE (3 entities in total)
Functional Keywordsglutamate ammonium ligase, glnr, gs, glutamine synthetase, met-sox, transition state, ligase, ligase-inhibitor complex, ligase/inhibitor
Biological sourceListeria monocytogenes
Total number of polymer chains12
Total formula weight618745.16
Authors
Schumacher, M.A. (deposition date: 2022-01-05, release date: 2022-06-29, Last modification date: 2023-10-18)
Primary citationTravis, B.A.,Peck, J.V.,Salinas, R.,Dopkins, B.,Lent, N.,Nguyen, V.D.,Borgnia, M.J.,Brennan, R.G.,Schumacher, M.A.
Molecular dissection of the glutamine synthetase-GlnR nitrogen regulatory circuitry in Gram-positive bacteria.
Nat Commun, 13:3793-3793, 2022
Cited by
PubMed Abstract: How bacteria sense and respond to nitrogen levels are central questions in microbial physiology. In Gram-positive bacteria, nitrogen homeostasis is controlled by an operon encoding glutamine synthetase (GS), a dodecameric machine that assimilates ammonium into glutamine, and the GlnR repressor. GlnR detects nitrogen excess indirectly by binding glutamine-feedback-inhibited-GS (FBI-GS), which activates its transcription-repression function. The molecular mechanisms behind this regulatory circuitry, however, are unknown. Here we describe biochemical and structural analyses of GS and FBI-GS-GlnR complexes from pathogenic and non-pathogenic Gram-positive bacteria. The structures show FBI-GS binds the GlnR C-terminal domain within its active-site cavity, juxtaposing two GlnR monomers to form a DNA-binding-competent GlnR dimer. The FBI-GS-GlnR interaction stabilizes the inactive GS conformation. Strikingly, this interaction also favors a remarkable dodecamer to tetradecamer transition in some GS, breaking the paradigm that all bacterial GS are dodecamers. These data thus unveil unique structural mechanisms of transcription and enzymatic regulation.
PubMed: 35778410
DOI: 10.1038/s41467-022-31573-0
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (3.5 Å)
Structure validation

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数据于2024-11-06公开中

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