Proteomics

Dataset Information

0

Interaction of human eIF5A and DHS K329A variant studied by HDX-MS


ABSTRACT: Hypusination is a unique post-translational modification of the eukaryotic translation factor 5A (eIF5A) that is essential for overcoming ribosome stalling at polyproline sequence stretches. The initial step of hypusination, the formation of deoxyhypusine, is catalyzed by deoxyhypusine synthase (DHS), however, the molecular details of the DHS-mediated reaction remained elusive. Recently, patient-derived variants of DHS and eIF5A have been linked to rare neurodevelopmental disorders. Here, we present the cryo-EM structure of the human eIF5A-DHS complex at 2.8Å resolution and a crystal structure of DHS trapped in the key reaction transition state. Furthermore, we show that disease-associated DHS variants influence the complex formation and hypusination efficiency. Hence, our work dissects the molecular details of the deoxyhypusine synthesis reaction and reveals how clinically-relevant mutations affect this crucial cellular process.

INSTRUMENT(S): Synapt MS

ORGANISM(S): Homo Sapiens (human) Escherichia Coli

SUBMITTER: Wieland Steinchen  

LAB HEAD: Gert Bange

PROVIDER: PXD040460 | Pride | 2023-05-10

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
211005_HX_377_Ba.fas Other
211005_HX_377_Ba_DHS.DnX Other
211005_HX_377_Ba_DHS_K329A.zip Other
211005_HX_377_Ba_EIF5A.DnX Other
211005_HX_377_Ba_ELF-DHS_K329A.zip Other
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Publications

Cryo-EM structure of human eIF5A-DHS complex reveals the molecular basis of hypusination-associated neurodegenerative disorders.

Wątor Elżbieta E   Wilk Piotr P   Biela Artur A   Rawski Michał M   Zak Krzysztof M KM   Steinchen Wieland W   Bange Gert G   Glatt Sebastian S   Grudnik Przemysław P  

Nature communications 20230327 1


Hypusination is a unique post-translational modification of the eukaryotic translation factor 5A (eIF5A) that is essential for overcoming ribosome stalling at polyproline sequence stretches. The initial step of hypusination, the formation of deoxyhypusine, is catalyzed by deoxyhypusine synthase (DHS), however, the molecular details of the DHS-mediated reaction remained elusive. Recently, patient-derived variants of DHS and eIF5A have been linked to rare neurodevelopmental disorders. Here, we pre  ...[more]

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