Literature DB >> 30392063

Mechanisms of formin-mediated actin assembly and dynamics.

Naomi Courtemanche1.   

Abstract

Cellular viability requires tight regulation of actin cytoskeletal dynamics. Distinct families of nucleation-promoting factors enable the rapid assembly of filament nuclei that elongate and are incorporated into diverse and specialized actin-based structures. In addition to promoting filament nucleation, the formin family of proteins directs the elongation of unbranched actin filaments. Processive association of formins with growing filament ends is achieved through continuous barbed end binding of the highly conserved, dimeric formin homology (FH) 2 domain. In cooperation with the FH1 domain and C-terminal tail region, FH2 dimers mediate actin subunit addition at speeds that can dramatically exceed the rate of spontaneous assembly. Here, I review recent biophysical, structural, and computational studies that have provided insight into the mechanisms of formin-mediated actin assembly and dynamics.

Keywords:  Actin; Formin; Polymerization; Profilin

Year:  2018        PMID: 30392063      PMCID: PMC6297096          DOI: 10.1007/s12551-018-0468-6

Source DB:  PubMed          Journal:  Biophys Rev        ISSN: 1867-2450


  41 in total

1.  Profilin's Affinity for Formin Regulates the Availability of Filament Ends for Actin Monomer Binding.

Authors:  Mark E Zweifel; Naomi Courtemanche
Journal:  J Mol Biol       Date:  2020-10-22       Impact factor: 5.469

Review 2.  The oligodendrocyte growth cone and its actin cytoskeleton: A fundamental element for progenitor cell migration and CNS myelination.

Authors:  Elizabeth J Thomason; Miguel Escalante; Donna J Osterhout; Babette Fuss
Journal:  Glia       Date:  2019-11-07       Impact factor: 7.452

3.  Deterministic actin waves as generators of cell polarization cues.

Authors:  Luiza Stankevicins; Nicolas Ecker; Emmanuel Terriac; Paolo Maiuri; Rouven Schoppmeyer; Pablo Vargas; Ana-Maria Lennon-Duménil; Matthieu Piel; Bin Qu; Markus Hoth; Karsten Kruse; Franziska Lautenschläger
Journal:  Proc Natl Acad Sci U S A       Date:  2019-12-27       Impact factor: 11.205

4.  Competition for delivery of profilin-actin to barbed ends limits the rate of formin-mediated actin filament elongation.

Authors:  Mark E Zweifel; Naomi Courtemanche
Journal:  J Biol Chem       Date:  2020-02-19       Impact factor: 5.157

5.  Modeling cell protrusion predicts how myosin II and actin turnover affect adhesion-based signaling.

Authors:  Ankit Chandra; Mitchell T Butler; James E Bear; Jason M Haugh
Journal:  Biophys J       Date:  2021-12-01       Impact factor: 4.033

6.  Profilin choreographs actin and microtubules in cells and cancer.

Authors:  Morgan L Pimm; Jessica Hotaling; Jessica L Henty-Ridilla
Journal:  Int Rev Cell Mol Biol       Date:  2020-07-16       Impact factor: 6.813

7.  Structural and computational examination of the Arabidopsis profilin-Poly-P complex reveals mechanistic details in profilin-regulated actin assembly.

Authors:  Zhu Qiao; He Sun; Justin Tze Yang Ng; Qianqian Ma; Si Hui Koh; Yuguang Mu; Yansong Miao; Yong-Gui Gao
Journal:  J Biol Chem       Date:  2019-10-25       Impact factor: 5.157

Review 8.  Erythroid enucleation: a gateway into a "bloody" world.

Authors:  Vijay Menon; Saghi Ghaffari
Journal:  Exp Hematol       Date:  2021-01-10       Impact factor: 3.084

9.  The formin inhibitor SMIFH2 inhibits members of the myosin superfamily.

Authors:  Yukako Nishimura; Shidong Shi; Fang Zhang; Rong Liu; Yasuharu Takagi; Alexander D Bershadsky; Virgile Viasnoff; James R Sellers
Journal:  J Cell Sci       Date:  2021-04-27       Impact factor: 5.285

10.  ALS-linked PFN1 variants exhibit loss and gain of functions in the context of formin-induced actin polymerization.

Authors:  Eric J Schmidt; Salome Funes; Jeanne E McKeon; Brittany R Morgan; Sivakumar Boopathy; Lauren C O'Connor; Osman Bilsel; Francesca Massi; Antoine Jégou; Daryl A Bosco
Journal:  Proc Natl Acad Sci U S A       Date:  2021-06-08       Impact factor: 11.205

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