Crossref journal-article
American Society for Cell Biology (ASCB)
Molecular Biology of the Cell (1076)
Abstract

Drosophila Enabled (Ena) was initially identified as a dominant genetic suppressor of mutations in the Abelson tyrosine kinase and, more recently, as a member of the Ena/human vasodilator-stimulated phosphoprotein (VASP) family of proteins. We have used genetic, biochemical, and cell biological approaches to demonstrate the functional relationship between Ena and human VASP. In addition, we have defined the roles of Ena domains identified as essential for its activity in vivo. We have demonstrated that VASP rescues the embryonic lethality associated with loss of Ena function inDrosophila and have shown that Ena, like VASP, is associated with actin filaments and focal adhesions when expressed in cultured cells. To define sequences that are central to Ena function, we have characterized the molecular lesions present in two lethalena mutant alleles that affected the Ena/VASP homology domain 1 (EVH1) and EVH2. A missense mutation that resulted in an amino acid substitution in the EVH1 domain eliminated in vitro binding of Ena to the cytoskeletal protein zyxin, a previously reported binding partner of VASP. A nonsense mutation that resulted in a C-terminally truncated Ena protein lacking the EVH2 domain failed to form multimeric complexes and exhibited reduced binding to zyxin and the Abelson Src homology 3 domain. Our analysis demonstrates that Ena and VASP are functionally homologous and defines the conserved EVH1 and EVH2 domains as central to the physiological activity of Ena.

Bibliography

Ahern-Djamali, S. M., Comer, A. R., Bachmann, C., Kastenmeier, A. S., Reddy, S. K., Beckerle, M. C., Walter, U., & Hoffmann, F. M. (1998). Mutations inDrosophilaEnabled and Rescue by Human Vasodilator-stimulated Phosphoprotein (VASP) Indicate Important Functional Roles for Ena/VASP Homology Domain 1 (EVH1) and EVH2 Domains. Molecular Biology of the Cell, 9(8), 2157–2171.

Authors 8
  1. Shawn M. Ahern-Djamali (first)
  2. Allen R. Comer (additional)
  3. Christiane Bachmann (additional)
  4. Andrew S. Kastenmeier (additional)
  5. Srinevas K. Reddy (additional)
  6. Mary C. Beckerle (additional)
  7. Ulrich Walter (additional)
  8. F. Michael Hoffmann (additional)
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Dates
Type When
Created 12 years, 2 months ago (July 2, 2013, 7:14 p.m.)
Deposited 3 years, 6 months ago (Feb. 26, 2022, 9:36 p.m.)
Indexed 2 months ago (July 4, 2025, 3:27 a.m.)
Issued 27 years, 1 month ago (Aug. 1, 1998)
Published 27 years, 1 month ago (Aug. 1, 1998)
Published Print 27 years, 1 month ago (Aug. 1, 1998)
Funders 0

None

@article{Ahern_Djamali_1998, title={Mutations inDrosophilaEnabled and Rescue by Human Vasodilator-stimulated Phosphoprotein (VASP) Indicate Important Functional Roles for Ena/VASP Homology Domain 1 (EVH1) and EVH2 Domains}, volume={9}, ISSN={1939-4586}, url={http://dx.doi.org/10.1091/mbc.9.8.2157}, DOI={10.1091/mbc.9.8.2157}, number={8}, journal={Molecular Biology of the Cell}, publisher={American Society for Cell Biology (ASCB)}, author={Ahern-Djamali, Shawn M. and Comer, Allen R. and Bachmann, Christiane and Kastenmeier, Andrew S. and Reddy, Srinevas K. and Beckerle, Mary C. and Walter, Ulrich and Hoffmann, F. Michael}, editor={Spudich, James A.}, year={1998}, month=aug, pages={2157–2171} }