Literature DB >> 24948803

Drosophila Syd-1, liprin-α, and protein phosphatase 2A B' subunit Wrd function in a linear pathway to prevent ectopic accumulation of synaptic materials in distal axons.

Long Li1, Xiaolin Tian1, Mingwei Zhu1, Dinara Bulgari2, Mathias A Böhme3, Fabian Goettfert4, Carolin Wichmann3, Stephan J Sigrist3, Edwin S Levitan2, Chunlai Wu5.   

Abstract

During synaptic development, presynaptic differentiation occurs as an intrinsic property of axons to form specialized areas of plasma membrane [active zones (AZs)] that regulate exocytosis and endocytosis of synaptic vesicles. Genetic and biochemical studies in vertebrate and invertebrate model systems have identified a number of proteins involved in AZ assembly. However, elucidating the molecular events of AZ assembly in a spatiotemporal manner remains a challenge. Syd-1 (synapse defective-1) and Liprin-α have been identified as two master organizers of AZ assembly. Genetic and imaging analyses in invertebrates show that Syd-1 works upstream of Liprin-α in synaptic assembly through undefined mechanisms. To understand molecular pathways downstream of Liprin-α, we performed a proteomic screen of Liprin-α-interacting proteins in Drosophila brains. We identify Drosophila protein phosphatase 2A (PP2A) regulatory subunit B' [Wrd (Well Rounded)] as a Liprin-α-interacting protein, and we demonstrate that it mediates the interaction of Liprin-α with PP2A holoenzyme and the Liprin-α-dependent synaptic localization of PP2A. Interestingly, loss of function in syd-1, liprin-α, or wrd shares a common defect in which a portion of synaptic vesicles, dense-core vesicles, and presynaptic cytomatrix proteins ectopically accumulate at the distal, but not proximal, region of motoneuron axons. Strong genetic data show that a linear syd-1/liprin-α/wrd pathway in the motoneuron antagonizes glycogen synthase kinase-3β kinase activity to prevent the ectopic accumulation of synaptic materials. Furthermore, we provide data suggesting that the syd-1/liprin-α/wrd pathway stabilizes AZ specification at the nerve terminal and that such a novel function is independent of the roles of syd-1/liprin-α in regulating the morphology of the T-bar structural protein BRP (Bruchpilot).
Copyright © 2014 the authors 0270-6474/14/348474-14$15.00/0.

Entities:  

Keywords:  Drosophila; Liprin-alpha; PP2A; Syd-1; active zone assembly; presynaptic differentiation

Mesh:

Substances:

Year:  2014        PMID: 24948803      PMCID: PMC4061390          DOI: 10.1523/JNEUROSCI.0409-14.2014

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


  46 in total

1.  RIM1alpha forms a protein scaffold for regulating neurotransmitter release at the active zone.

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2.  Association of the kinesin motor KIF1A with the multimodular protein liprin-alpha.

Authors:  Hyewon Shin; Michael Wyszynski; Kyung-Hye Huh; Juli G Valtschanoff; Jae-Ran Lee; Jaewon Ko; Michel Streuli; Richard J Weinberg; Morgan Sheng; Eunjoon Kim
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3.  Interaction of the ERC family of RIM-binding proteins with the liprin-alpha family of multidomain proteins.

Authors:  Jaewon Ko; Moonseok Na; Seho Kim; Jae-Ran Lee; Eunjoon Kim
Journal:  J Biol Chem       Date:  2003-08-15       Impact factor: 5.157

4.  SYD-1, a presynaptic protein with PDZ, C2 and rhoGAP-like domains, specifies axon identity in C. elegans.

Authors:  Steven J Hallam; Alexandr Goncharov; Jason McEwen; Renee Baran; Yishi Jin
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Review 1.  Presynaptic active zones in invertebrates and vertebrates.

Authors:  Frauke Ackermann; Clarissa L Waites; Craig C Garner
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2.  UNC-16 (JIP3) Acts Through Synapse-Assembly Proteins to Inhibit the Active Transport of Cell Soma Organelles to Caenorhabditis elegans Motor Neuron Axons.

Authors:  Stacey L Edwards; Logan M Morrison; Rosalina M Yorks; Christopher M Hoover; Soorajnath Boominathan; Kenneth G Miller
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3.  Synapse-Assembly Proteins Maintain Synaptic Vesicle Cluster Stability and Regulate Synaptic Vesicle Transport in Caenorhabditis elegans.

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7.  Loss of the Coffin-Lowry syndrome-associated gene RSK2 alters ERK activity, synaptic function and axonal transport in Drosophila motoneurons.

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8.  Active zone stability: insights from fly neuromuscular junction.

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9.  A STRIPAK complex mediates axonal transport of autophagosomes and dense core vesicles through PP2A regulation.

Authors:  Amanda L Neisch; Thomas P Neufeld; Thomas S Hays
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10.  Dynamical Organization of Syntaxin-1A at the Presynaptic Active Zone.

Authors:  Alexander Ullrich; Mathias A Böhme; Johannes Schöneberg; Harald Depner; Stephan J Sigrist; Frank Noé
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