Literature DB >> 23223303

The actin nucleator Cobl is crucial for Purkinje cell development and works in close conjunction with the F-actin binding protein Abp1.

Natja Haag1, Lukas Schwintzer, Rashmi Ahuja, Nicole Koch, Julia Grimm, Heike Heuer, Britta Qualmann, Michael M Kessels.   

Abstract

Cortical actin dynamics shapes cells. To generate actin filaments, cells rely on actin nucleators. Cobl is a novel, brain-enriched, WH2 domain-based actin nucleator, yet, its functions remained largely elusive. Here, we reveal that Cobl plays a crucial role in Purkinje cell development using gene gun transfections within intact murine cerebellar contexts. Cobl deficiency impaired proper dendritic arborization of Purkinje cells and led to low-complexity arbors. Branch point numbers and density and especially higher order branching were strongly affected. Our efforts to reveal how Cobl is physically and functionally integrated into the cortical actin cytoskeleton showed that all Cobl loss-of-function phenotypes were exactly mirrored by knockdown of the F-actin-binding protein Abp1. By subcellular fractionations, protein interaction analyses, subcellular reconstitutions of protein complexes, colocalization studies in cells and tissues, and by functional analyses in neuronal morphogenesis we demonstrate that both proteins associate and work with each other closely. Cobl-mediated dendritic branch induction in hippocampal neurons critically relied on Abp1. Our study highlights that the functions of Abp1 are distinct from those of the Cobl-binding protein syndapin I. The importance of Cobl/Abp1 complex formation and of Abp1-mediated F-actin association was highlighted by functional rescue experiments demonstrating that a Cobl mutant deficient for Abp1 binding and an Abp1 mutant supporting Cobl association but lacking the F-actin binding ability failed to rescue the respective loss-of-function phenotypes. Thus, F-actin-anchored Cobl/Abp1 complexes seem crucial for neuromorphogenesis processes, particularly for the postnatal arborization of Purkinje cells representing the source for all motor coordination in the cerebellar cortex.

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Year:  2012        PMID: 23223303      PMCID: PMC6621670          DOI: 10.1523/JNEUROSCI.0843-12.2012

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  33 in total

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Journal:  J Neurosci       Date:  2002-02-01       Impact factor: 6.167

2.  Syndapins integrate N-WASP in receptor-mediated endocytosis.

Authors:  Michael M Kessels; Britta Qualmann
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Authors:  M M Kessels; A E Engqvist-Goldstein; D G Drubin
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6.  Loss of WAVE-1 causes sensorimotor retardation and reduced learning and memory in mice.

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  25 in total

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Journal:  J Neurosci       Date:  2018-11-30       Impact factor: 6.167

2.  The Dendritic Differentiation of Purkinje Neurons: Unsolved Mystery in Formation of Unique Dendrites.

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Journal:  Cerebellum       Date:  2015-06       Impact factor: 3.847

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Review 4.  Building Blocks of Functioning Brain: Cytoskeletal Dynamics in Neuronal Development.

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5.  Deciphering caveolar functions by syndapin III KO-mediated impairment of caveolar invagination.

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6.  Dendrite architecture organized by transcriptional control of the F-actin nucleator Spire.

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7.  Hippocampal subregions exhibit both distinct and shared transcriptomic responses to aging and nonneurodegenerative cognitive decline.

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Review 8.  Actin cytoskeleton in dendritic spine development and plasticity.

Authors:  Wenliang Lei; Omotola F Omotade; Kenneth R Myers; James Q Zheng
Journal:  Curr Opin Neurobiol       Date:  2016-04-30       Impact factor: 6.627

Review 9.  The WH2 Domain and Actin Nucleation: Necessary but Insufficient.

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Review 10.  The Role of Protein Arginine Methylation as Post-Translational Modification on Actin Cytoskeletal Components in Neuronal Structure and Function.

Authors:  Britta Qualmann; Michael M Kessels
Journal:  Cells       Date:  2021-05-01       Impact factor: 6.600

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