Literature DB >> 28228524

Structural insights into the activation mechanism of dynamin-like EHD ATPases.

Arthur Alves Melo1,2, Balachandra G Hegde3, Claudio Shah1,2, Elin Larsson4, J Mario Isas5, Séverine Kunz1, Richard Lundmark4,6, Ralf Langen5, Oliver Daumke7,2.   

Abstract

Eps15 (epidermal growth factor receptor pathway substrate 15)-homology domain containing proteins (EHDs) comprise a family of dynamin-related mechano-chemical ATPases involved in cellular membrane trafficking. Previous studies have revealed the structure of the EHD2 dimer, but the molecular mechanisms of membrane recruitment and assembly have remained obscure. Here, we determined the crystal structure of an amino-terminally truncated EHD4 dimer. Compared with the EHD2 structure, the helical domains are 50° rotated relative to the GTPase domain. Using electron paramagnetic spin resonance (EPR), we show that this rotation aligns the two membrane-binding regions in the helical domain toward the lipid bilayer, allowing membrane interaction. A loop rearrangement in GTPase domain creates a new interface for oligomer formation. Our results suggest that the EHD4 structure represents the active EHD conformation, whereas the EHD2 structure is autoinhibited, and reveal a complex series of domain rearrangements accompanying activation. A comparison with other peripheral membrane proteins elucidates common and specific features of this activation mechanism.

Entities:  

Keywords:  autoinhibition; dynamin superfamily; endocytic pathways; membrane remodeling; protein structure

Mesh:

Substances:

Year:  2017        PMID: 28228524      PMCID: PMC5465921          DOI: 10.1073/pnas.1614075114

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  35 in total

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3.  Structural insights into membrane interaction and caveolar targeting of dynamin-like EHD2.

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4.  Three-dimensional structure of the neuronal-Sec1-syntaxin 1a complex.

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Review 2.  The structural biology of the dynamin-related proteins: New insights into a diverse, multitalented family.

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8.  Sorting nexin 17 (SNX17) links endosomal sorting to Eps15 homology domain protein 1 (EHD1)-mediated fission machinery.

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