Literature DB >> 29738713

A Dendritic Guidance Receptor Complex Brings Together Distinct Actin Regulators to Drive Efficient F-Actin Assembly and Branching.

Wei Zou1, Xintong Dong2, Timothy R Broederdorf3, Ao Shen4, Daniel A Kramer3, Rebecca Shi5, Xing Liang2, David M Miller6, Yang K Xiang7, Ryohei Yasuda8, Baoyu Chen9, Kang Shen10.   

Abstract

Proper morphogenesis of dendrites plays a fundamental role in the establishment of neural circuits. The molecular mechanism by which dendrites grow highly complex branches is not well understood. Here, using the Caenorhabditis elegans PVD neuron, we demonstrate that high-order dendritic branching requires actin polymerization driven by coordinated interactions between two membrane proteins, DMA-1 and HPO-30, with their cytoplasmic interactors, the RacGEF TIAM-1 and the actin nucleation promotion factor WAVE regulatory complex (WRC). The dendrite branching receptor DMA-1 directly binds to the PDZ domain of TIAM-1, while the claudin-like protein HPO-30 directly interacts with the WRC. On dendrites, DMA-1 and HPO-30 form a receptor-associated signaling complex to bring TIAM-1 and the WRC to close proximity, leading to elevated assembly of F-actin needed to drive high-order dendrite branching. The synergistic activation of F-actin assembly by scaffolding distinct actin regulators might represent a general mechanism in promoting complex dendrite arborization.
Copyright © 2018. Published by Elsevier Inc.

Entities:  

Keywords:  DMA-1; HPO-30; Rac; TIAM-1; WAVE regulatory complex; actin; dendrite branching; receptor; synergy

Mesh:

Substances:

Year:  2018        PMID: 29738713      PMCID: PMC6292511          DOI: 10.1016/j.devcel.2018.04.008

Source DB:  PubMed          Journal:  Dev Cell        ISSN: 1534-5807            Impact factor:   12.270


  55 in total

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2.  Son of sevenless directly links the Robo receptor to rac activation to control axon repulsion at the midline.

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Journal:  Development       Date:  2014-11-05       Impact factor: 6.868

5.  Biochemical reconstitution of the WAVE regulatory complex.

Authors:  Baoyu Chen; Shae B Padrick; Lisa Henry; Michael K Rosen
Journal:  Methods Enzymol       Date:  2014       Impact factor: 1.600

6.  An extracellular adhesion molecule complex patterns dendritic branching and morphogenesis.

Authors:  Xintong Dong; Oliver W Liu; Audrey S Howell; Kang Shen
Journal:  Cell       Date:  2013-10-10       Impact factor: 41.582

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Authors:  Cody J Smith; Timothy O'Brien; Marios Chatzigeorgiou; W Clay Spencer; Elana Feingold-Link; Steven J Husson; Sayaka Hori; Shohei Mitani; Alexander Gottschalk; William R Schafer; David M Miller
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10.  Protocadherins mediate dendritic self-avoidance in the mammalian nervous system.

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  16 in total

Review 1.  Mechanisms that regulate morphogenesis of a highly branched neuron in C. elegans.

Authors:  Lakshmi Sundararajan; Jamie Stern; David M Miller
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3.  Axon-Dependent Patterning and Maintenance of Somatosensory Dendritic Arbors.

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6.  TIAM-1/GEF can shape somatosensory dendrites independently of its GEF activity by regulating F-actin localization.

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Review 7.  [Intrinsic and extrinsic mechanisms regulating neuronal dendrite morphogenesis].

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8.  A two-step actin polymerization mechanism drives dendrite branching.

Authors:  Rebecca Shi; Daniel A Kramer; Baoyu Chen; Kang Shen
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10.  The Claudin-like Protein HPO-30 Is Required to Maintain LAChRs at the C. elegans Neuromuscular Junction.

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