Literature DB >> 23843509

Calcium release-dependent actin flow in the leading process mediates axophilic migration.

B Ian Hutchins1, Ulrike Klenke, Susan Wray.   

Abstract

Proper assembly of neural circuits requires newly born neurons to migrate from their place of origin to their final location. Little is known about the mechanisms of axophilic neuronal migration, whereby neurons travel along axon pathways to navigate to their destinations. Gonadotropin-releasing hormone (GnRH)-expressing neurons migrate along olfactory axons from the nose into the forebrain during development, and were used as a model of axophilic migration. After migrating, GnRH neurons are located in the hypothalamus and are essential for puberty and maintenance of reproductive function. To gain a better understanding of the mechanisms underlying axophilic migration, we investigated in mice the regulation of movement from calcium signals to cytoskeletal dynamics. Live imaging revealed robust calcium activity during axophilic migration, and calcium release through IP3 receptors was found to stimulate migration. This occurred through a signaling pathway involving the calcium sensor calcium/calmodulin protein kinase kinase, AMP-activated kinase, and RhoA/ROCK. By imaging GnRH neurons expressing actin-GFP or Lifeact-RFP, calcium release was found to stimulate leading process actin flow away from the cell body. In contrast, actin contractions at the cell rear were unaffected by this calcium signaling pathway. These findings are the first to test the regulation of cytoskeletal dynamics in axophilic migration, and reveal mechanisms of movement that have broad implications for the migration of other CNS populations.

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Year:  2013        PMID: 23843509      PMCID: PMC3724331          DOI: 10.1523/JNEUROSCI.3758-12.2013

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


  57 in total

1.  Mode and tempo of tangential cell migration in the cerebellar external granular layer.

Authors:  H Komuro; E Yacubova; E Yacubova; P Rakic
Journal:  J Neurosci       Date:  2001-01-15       Impact factor: 6.167

2.  Glutamate receptors regulate actin-based plasticity in dendritic spines.

Authors:  M Fischer; S Kaech; U Wagner; H Brinkhaus; A Matus
Journal:  Nat Neurosci       Date:  2000-09       Impact factor: 24.884

3.  Lower rhombic lip-derived cells undergo transmedian tangential migration followed by radial migration in the chick embryo brainstem.

Authors:  Katsuhiko Ono; Yukihiko Yasui; Kazuhiro Ikenaka
Journal:  Eur J Neurosci       Date:  2004-08       Impact factor: 3.386

4.  Actomyosin contraction at the cell rear drives nuclear translocation in migrating cortical interneurons.

Authors:  Francisco J Martini; Miguel Valdeolmillos
Journal:  J Neurosci       Date:  2010-06-23       Impact factor: 6.167

Review 5.  From nose to brain: development of gonadotrophin-releasing hormone-1 neurones.

Authors:  S Wray
Journal:  J Neuroendocrinol       Date:  2010-07       Impact factor: 3.627

6.  SDF and GABA interact to regulate axophilic migration of GnRH neurons.

Authors:  Filippo Casoni; B Ian Hutchins; Duncan Donohue; Michele Fornaro; Brian G Condie; Susan Wray
Journal:  J Cell Sci       Date:  2012-09-12       Impact factor: 5.285

Review 7.  Development of gonadotropin-releasing hormone-1 neurons.

Authors:  S Wray
Journal:  Front Neuroendocrinol       Date:  2002-07       Impact factor: 8.606

8.  Fezf1 is required for penetration of the basal lamina by olfactory axons to promote olfactory development.

Authors:  Yasuhito Watanabe; Kiyoshi Inoue; Ayako Okuyama-Yamamoto; Nobuhiro Nakai; Jin Nakatani; Ken-Ichi Nibu; Naoko Sato; Yasuhiko Iiboshi; Kosuke Yusa; Gen Kondoh; Junji Takeda; Toshio Terashima; Toru Takumi
Journal:  J Comp Neurol       Date:  2009-08-10       Impact factor: 3.215

9.  CXCR4/SDF-1 system modulates development of GnRH-1 neurons and the olfactory system.

Authors:  Yoko Toba; Jean D Tiong; Qing Ma; Susan Wray
Journal:  Dev Neurobiol       Date:  2008-03       Impact factor: 3.964

10.  Signaling mechanisms in cortical axon growth, guidance, and branching.

Authors:  Katherine Kalil; Li Li; B Ian Hutchins
Journal:  Front Neuroanat       Date:  2011-09-28       Impact factor: 3.856

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  17 in total

1.  Analysis of microtubule growth dynamics arising from altered actin network structure and contractility in breast tumor cells.

Authors:  Eleanor C Ory; Lekhana Bhandary; Amanda E Boggs; Kristi R Chakrabarti; Joshua Parker; Wolfgang Losert; Stuart S Martin
Journal:  Phys Biol       Date:  2017-04-20       Impact factor: 2.583

2.  Two independent but synchronized Gβγ subunit-controlled pathways are essential for trailing-edge retraction during macrophage migration.

Authors:  Praneeth Siripurapu; Dinesh Kankanamge; Kasun Ratnayake; Kanishka Senarath; Ajith Karunarathne
Journal:  J Biol Chem       Date:  2017-09-01       Impact factor: 5.157

3.  CCDC141 Mutation Identified in Anosmic Hypogonadotropic Hypogonadism (Kallmann Syndrome) Alters GnRH Neuronal Migration.

Authors:  B Ian Hutchins; L Damla Kotan; Carol Taylor-Burds; Yusuf Ozkan; Paul J Cheng; Fatih Gurbuz; Jean D R Tiong; Eda Mengen; Bilgin Yuksel; A Kemal Topaloglu; Susan Wray
Journal:  Endocrinology       Date:  2016-03-25       Impact factor: 4.736

4.  CCDC141 Mutations in Idiopathic Hypogonadotropic Hypogonadism.

Authors:  Ihsan Turan; B Ian Hutchins; Bulent Hacihamdioglu; L Damla Kotan; Fatih Gurbuz; Ayca Ulubay; Eda Mengen; Bilgin Yuksel; Susan Wray; A Kemal Topaloglu
Journal:  J Clin Endocrinol Metab       Date:  2017-06-01       Impact factor: 5.958

Review 5.  GnRH, anosmia and hypogonadotropic hypogonadism--where are we?

Authors:  Paolo E Forni; Susan Wray
Journal:  Front Neuroendocrinol       Date:  2014-10-13       Impact factor: 8.606

6.  Leading-process actomyosin coordinates organelle positioning and adhesion receptor dynamics in radially migrating cerebellar granule neurons.

Authors:  Niraj Trivedi; Joseph S Ramahi; Mahmut Karakaya; Danielle Howell; Ryan A Kerekes; David J Solecki
Journal:  Neural Dev       Date:  2014-12-02       Impact factor: 3.842

7.  Capture of microtubule plus-ends at the actin cortex promotes axophilic neuronal migration by enhancing microtubule tension in the leading process.

Authors:  B Ian Hutchins; Susan Wray
Journal:  Front Cell Neurosci       Date:  2014-11-27       Impact factor: 5.505

Review 8.  From migration to settlement: the pathways, migration modes and dynamics of neurons in the developing brain.

Authors:  Yumiko Hatanaka; Yan Zhu; Makio Torigoe; Yoshiaki Kita; Fujio Murakami
Journal:  Proc Jpn Acad Ser B Phys Biol Sci       Date:  2016       Impact factor: 3.493

9.  Loss of CIB2 Causes Profound Hearing Loss and Abolishes Mechanoelectrical Transduction in Mice.

Authors:  Yanfei Wang; Jie Li; Xuerui Yao; Wei Li; Haibo Du; Mingliang Tang; Wei Xiong; Renjie Chai; Zhigang Xu
Journal:  Front Mol Neurosci       Date:  2017-12-04       Impact factor: 5.639

Review 10.  Development of the gonadotropin-releasing hormone system.

Authors:  Anne H Duittoz; Paolo E Forni; Paolo Giacobini; Matan Golan; Patrice Mollard; Ariel L Negrón; Sally Radovick; Susan Wray
Journal:  J Neuroendocrinol       Date:  2022-01-23       Impact factor: 3.870

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