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Dephosphocholination by Legionella effector Lem3 functions through remodelling of the switch II region of Rab1b

Kaspers, Marietta S. (författare)
Institute of Biochemistry and Signal Transduction, University Medical Centre Hamburg-Eppendorf (UKE), Martinistr. 52, Hamburg, Germany
Pogenberg, Vivian (författare)
Institute of Biochemistry and Signal Transduction, University Medical Centre Hamburg-Eppendorf (UKE), Martinistr. 52, Hamburg, Germany
Pett, Christian (författare)
Umeå universitet,Kemiska institutionen
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Ernst, Stefan (författare)
Center for Integrated Protein Science Munich (CIPSM), Department Chemistry, Technical University of Munich, Lichtenbergstrasse 4Garching, Germany
Ecker, Felix (författare)
Center for Protein Assemblies, Technical University of Munich, Garching, Germany
Ochtrop, Philipp (författare)
Umeå universitet,Kemiska institutionen
Groll, Michael (författare)
Center for Protein Assemblies, Technical University of Munich, Garching, Germany
Hedberg, Christian (författare)
Umeå universitet,Kemiska institutionen
Itzen, Aymelt (författare)
Institute of Biochemistry and Signal Transduction, University Medical Centre Hamburg-Eppendorf (UKE), Martinistr. 52, Hamburg, Germany; Centre for Structural Systems Biology, University Medical Centre Hamburg-Eppendorf (UKE), Martinistr. 52, Hamburg, Germany
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Institute of Biochemistry and Signal Transduction, University Medical Centre Hamburg-Eppendorf (UKE), Martinistr 52, Hamburg, Germany Kemiska institutionen (creator_code:org_t)
Springer Nature, 2023
2023
Engelska.
Ingår i: Nature Communications. - : Springer Nature. - 2041-1723. ; 14:1
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • Bacterial pathogens often make use of post-translational modifications to manipulate host cells. Legionella pneumophila, the causative agent of Legionnaires disease, secretes the enzyme AnkX that uses cytidine diphosphate-choline to post-translationally modify the human small G-Protein Rab1 with a phosphocholine moiety at Ser76. Later in the infection, the Legionella enzyme Lem3 acts as a dephosphocholinase, hydrolytically removing the phosphocholine. While the molecular mechanism for Rab1 phosphocholination by AnkX has recently been resolved, structural insights into the activity of Lem3 remained elusive. Here, we stabilise the transient Lem3:Rab1b complex by substrate mediated covalent capture. Through crystal structures of Lem3 in the apo form and in complex with Rab1b, we reveal Lem3's catalytic mechanism, showing that it acts on Rab1 by locally unfolding it. Since Lem3 shares high structural similarity with metal-dependent protein phosphatases, our Lem3:Rab1b complex structure also sheds light on how these phosphatases recognise protein substrates.

Ämnesord

NATURVETENSKAP  -- Biologi -- Biokemi och molekylärbiologi (hsv//swe)
NATURAL SCIENCES  -- Biological Sciences -- Biochemistry and Molecular Biology (hsv//eng)

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