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A PH domain in ACAP1 possesses key features of the BAR domain in promoting membrane curvature.


ABSTRACT: The BAR (Bin-Amphiphysin-Rvs) domain undergoes dimerization to produce a curved protein structure, which superimposes onto membrane through electrostatic interactions to sense and impart membrane curvature. In some cases, a BAR domain also possesses an amphipathic helix that inserts into the membrane to induce curvature. ACAP1 (Arfgap with Coil coil, Ankyrin repeat, and PH domain protein 1) contains a BAR domain. Here, we show that this BAR domain can neither bind membrane nor impart curvature, but instead requires a neighboring PH (Pleckstrin Homology) domain to achieve these functions. Specific residues within the PH domain are responsible for both membrane binding and curvature generation. The BAR domain adjacent to the PH domain instead interacts with the BAR domains of neighboring ACAP1 proteins to enable clustering at the membrane. Thus, we have uncovered the molecular basis for an unexpected and unconventional collaboration between PH and BAR domains in membrane bending.

SUBMITTER: Pang X 

PROVIDER: S-EPMC4198613 | biostudies-literature | 2014 Oct

REPOSITORIES: biostudies-literature

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A PH domain in ACAP1 possesses key features of the BAR domain in promoting membrane curvature.

Pang Xiaoyun X   Fan Jun J   Zhang Yan Y   Zhang Kai K   Gao Bingquan B   Ma Jun J   Li Jian J   Deng Yuchen Y   Zhou Qiangjun Q   Egelman Edward H EH   Hsu Victor W VW   Sun Fei F  

Developmental cell 20141002 1


The BAR (Bin-Amphiphysin-Rvs) domain undergoes dimerization to produce a curved protein structure, which superimposes onto membrane through electrostatic interactions to sense and impart membrane curvature. In some cases, a BAR domain also possesses an amphipathic helix that inserts into the membrane to induce curvature. ACAP1 (Arfgap with Coil coil, Ankyrin repeat, and PH domain protein 1) contains a BAR domain. Here, we show that this BAR domain can neither bind membrane nor impart curvature,  ...[more]

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