Literature DB >> 24271012

Calcium binding is essential for plastin 3 function in Smn-deficient motoneurons.

Alison N Lyon1, Ricardo H Pineda, le Thi Hao, Elena Kudryashova, Dmitri S Kudryashov, Christine E Beattie.   

Abstract

The actin-binding and bundling protein, plastin 3 (PLS3), was identified as a protective modifier of spinal muscular atrophy (SMA) in some patient populations and as a disease modifier in animal models of SMA. How it functions in this process, however, is not known. Because PLS3 is an actin-binding/bundling protein, we hypothesized it would likely act via modification of the actin cytoskeleton in axons and neuromuscular junctions to protect motoneurons in SMA. To test this, we examined the ability of other known actin cytoskeleton organizing proteins to modify motor axon outgrowth phenotypes in an smn morphant zebrafish model of SMA. While PLS3 can fully compensate for low levels of smn, cofilin 1, profilin 2 and α-actinin 1 did not affect smn morphant motor axon outgrowth. To determine how PLS3 functions in SMA, we generated deletion constructs of conserved PLS3 structural domains. The EF hands were essential for PLS3 rescue of smn morphant phenotypes, and mutation of the Ca(2+)-binding residues within the EF hands resulted in a complete loss of PLS3 rescue. These results indicate that Ca(2+) regulation is essential for the function of PLS3 in motor axons. Remarkably, PLS3 mutants lacking both actin-binding domains were still able to rescue motor axons in smn morphants, although not as well as full-length PLS3. Therefore, PLS3 function in this process may have an actin-independent component.

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Year:  2013        PMID: 24271012      PMCID: PMC3959813          DOI: 10.1093/hmg/ddt595

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  79 in total

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Journal:  J Biol Chem       Date:  2001-02-13       Impact factor: 5.157

2.  Quantitative analyses of SMN1 and SMN2 based on real-time lightCycler PCR: fast and highly reliable carrier testing and prediction of severity of spinal muscular atrophy.

Authors:  Markus Feldkötter; Verena Schwarzer; Radu Wirth; Thomas F Wienker; Brunhilde Wirth
Journal:  Am J Hum Genet       Date:  2001-12-21       Impact factor: 11.025

3.  A novel protein with RNA-binding motifs interacts with ataxin-2.

Authors:  H Shibata; D P Huynh; S M Pulst
Journal:  Hum Mol Genet       Date:  2000-05-22       Impact factor: 6.150

4.  Disruption of an SF2/ASF-dependent exonic splicing enhancer in SMN2 causes spinal muscular atrophy in the absence of SMN1.

Authors:  Luca Cartegni; Adrian R Krainer
Journal:  Nat Genet       Date:  2002-03-04       Impact factor: 38.330

5.  AtFim1 is an actin filament crosslinking protein from Arabidopsis thaliana.

Authors:  D R Kovar; C J Staiger; E A Weaver; D W McCurdy
Journal:  Plant J       Date:  2000-12       Impact factor: 6.417

6.  The gene encoding alsin, a protein with three guanine-nucleotide exchange factor domains, is mutated in a form of recessive amyotrophic lateral sclerosis.

Authors:  Y Yang; A Hentati; H X Deng; O Dabbagh; T Sasaki; M Hirano; W Y Hung; K Ouahchi; J Yan; A C Azim; N Cole; G Gascon; A Yagmour; M Ben-Hamida; M Pericak-Vance; F Hentati; T Siddique
Journal:  Nat Genet       Date:  2001-10       Impact factor: 38.330

7.  Cbl-CIN85-endophilin complex mediates ligand-induced downregulation of EGF receptors.

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Journal:  Nature       Date:  2002-03-14       Impact factor: 49.962

8.  Molecular analysis of spinal muscular atrophy and modification of the phenotype by SMN2.

Authors:  Matthew D Mailman; John W Heinz; Audrey C Papp; Pamela J Snyder; Mary S Sedra; Brunhilde Wirth; Arthur H M Burghes; Thomas W Prior
Journal:  Genet Med       Date:  2002 Jan-Feb       Impact factor: 8.822

9.  An atomic model of actin filaments cross-linked by fimbrin and its implications for bundle assembly and function.

Authors:  N Volkmann; D DeRosier; P Matsudaira; D Hanein
Journal:  J Cell Biol       Date:  2001-05-28       Impact factor: 10.539

10.  Dynamic shuttling of TIA-1 accompanies the recruitment of mRNA to mammalian stress granules.

Authors:  N Kedersha; M R Cho; W Li; P W Yacono; S Chen; N Gilks; D E Golan; P Anderson
Journal:  J Cell Biol       Date:  2000-12-11       Impact factor: 10.539

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  28 in total

1.  A novel frameshift deletion in PLS3 causing severe primary osteoporosis.

Authors:  Alice Costantini; Panagiotis Ν Krallis; Anders Kämpe; Emmanouil M Karavitakis; Fulya Taylan; Outi Mäkitie; Artemis Doulgeraki
Journal:  J Hum Genet       Date:  2018-06-08       Impact factor: 3.172

2.  Actin-bundling protein plastin 3 is a regulator of ectoplasmic specialization dynamics during spermatogenesis in the rat testis.

Authors:  Nan Li; Dolores D Mruk; Chris K C Wong; Will M Lee; Daishu Han; C Yan Cheng
Journal:  FASEB J       Date:  2015-06-05       Impact factor: 5.191

Review 3.  Genetic modifiers and oligogenic inheritance.

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Journal:  Cold Spring Harb Perspect Med       Date:  2015-06-01       Impact factor: 6.915

4.  Osteogenesis imperfecta mutations in plastin 3 lead to impaired calcium regulation of actin bundling.

Authors:  Christopher L Schwebach; Elena Kudryashova; Weili Zheng; Matthew Orchard; Harper Smith; Lucas A Runyan; Edward H Egelman; Dmitri S Kudryashov
Journal:  Bone Res       Date:  2020-05-22       Impact factor: 13.567

5.  The Power of Human Protective Modifiers: PLS3 and CORO1C Unravel Impaired Endocytosis in Spinal Muscular Atrophy and Rescue SMA Phenotype.

Authors:  Seyyedmohsen Hosseinibarkooie; Miriam Peters; Laura Torres-Benito; Raphael H Rastetter; Kristina Hupperich; Andrea Hoffmann; Natalia Mendoza-Ferreira; Anna Kaczmarek; Eva Janzen; Janine Milbradt; Tobias Lamkemeyer; Frank Rigo; C Frank Bennett; Christoph Guschlbauer; Ansgar Büschges; Matthias Hammerschmidt; Markus Riessland; Min Jeong Kye; Christoph S Clemen; Brunhilde Wirth
Journal:  Am J Hum Genet       Date:  2016-08-04       Impact factor: 11.025

6.  A novel large fragment deletion in PLS3 causes rare X-linked early-onset osteoporosis and response to zoledronic acid.

Authors:  F Lv; M Ma; W Liu; X Xu; Y Song; L Li; Y Jiang; O Wang; W Xia; X Xing; Z Qiu; M Li
Journal:  Osteoporos Int       Date:  2017-06-16       Impact factor: 4.507

7.  Gender Effects on the Clinical Phenotype in Japanese Patients with Spinal Muscular Atrophy.

Authors:  Mawaddah Ar Rochmah; Ai Shima; Nur Imma Fatimah Harahap; Emma Tabe Eko Niba; Naoya Morisada; Shinichiro Yanagisawa; Toshio Saito; Kaori Kaneko; Kayoko Saito; Ichiro Morioka; Kazumoto Iijima; Poh San Lai; Yoshihiro Bouike; Hisahide Nishio; Masakazu Shinohara
Journal:  Kobe J Med Sci       Date:  2017-10-16

8.  ZFIN, The zebrafish model organism database: Updates and new directions.

Authors:  Leyla Ruzicka; Yvonne M Bradford; Ken Frazer; Douglas G Howe; Holly Paddock; Sridhar Ramachandran; Amy Singer; Sabrina Toro; Ceri E Van Slyke; Anne E Eagle; David Fashena; Patrick Kalita; Jonathan Knight; Prita Mani; Ryan Martin; Sierra A T Moxon; Christian Pich; Kevin Schaper; Xiang Shao; Monte Westerfield
Journal:  Genesis       Date:  2015-07-08       Impact factor: 2.487

Review 9.  Recent Discoveries in Monogenic Disorders of Childhood Bone Fragility.

Authors:  Riikka E Mäkitie; Anders J Kämpe; Fulya Taylan; Outi Mäkitie
Journal:  Curr Osteoporos Rep       Date:  2017-08       Impact factor: 5.096

10.  Plastin 3 is upregulated in iPSC-derived motoneurons from asymptomatic SMN1-deleted individuals.

Authors:  Ludwig Heesen; Michael Peitz; Laura Torres-Benito; Irmgard Hölker; Kristina Hupperich; Kristina Dobrindt; Johannes Jungverdorben; Swetlana Ritzenhofen; Beatrice Weykopf; Daniela Eckert; Seyyed Mohsen Hosseini-Barkooie; Markus Storbeck; Noemi Fusaki; Renata Lonigro; Raoul Heller; Min Jeong Kye; Oliver Brüstle; Brunhilde Wirth
Journal:  Cell Mol Life Sci       Date:  2015-11-16       Impact factor: 9.261

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