Literature DB >> 26032020

Abnormal synaptic Ca(2+) homeostasis and morphology in cortical neurons of familial hemiplegic migraine type 1 mutant mice.

Katharina Eikermann-Haerter1, Michal Arbel-Ornath2, Nilufer Yalcin1, Esther S Yu1, Kishore V Kuchibhotla2, Izumi Yuzawa1, Eloise Hudry2, Carli R Willard2, Mihail Climov1, Fatmagul Keles1, Arianna M Belcher2, Buse Sengul1, Andrea Negro1, Isaac A Rosen1, Andrea Arreguin1, Michel D Ferrari3, Arn M J M van den Maagdenberg3,4, Brian J Bacskai2, Cenk Ayata1,5.   

Abstract

OBJECTIVE: Migraine is among the most common and debilitating neurological conditions. Familial hemiplegic migraine type 1 (FHM1), a monogenic migraine subtype, is caused by gain-of-function of voltage-gated CaV 2.1 calcium channels. FHM1 mice carry human pathogenic mutations in the α1A subunit of CaV 2.1 channels and are highly susceptible to cortical spreading depression (CSD), the electrophysiologic event underlying migraine aura. To date, however, the mechanism underlying increased CSD/migraine susceptibility remains unclear.
METHODS: We employed in vivo multiphoton microscopy of the genetically encoded Ca(2+)-indicator yellow cameleon to investigate synaptic morphology and [Ca(2+)]i in FHM1 mice. To study CSD-induced cerebral oligemia, we used in vivo laser speckle flowmetry and multimodal imaging. With electrophysiologic recordings, we investigated the effect of the CaV 2.1 gating modifier tert-butyl dihydroquinone on CSD in vivo.
RESULTS: FHM1 mutations elevate neuronal [Ca(2+)]i and alter synaptic morphology as a mechanism for enhanced CSD susceptibility that we were able to normalize with a CaV 2.1 gating modifier in hyperexcitable FHM1 mice. At the synaptic level, axonal boutons were larger, and dendritic spines were predominantly of the mushroom type, which both provide a structural correlate for enhanced neuronal excitability. Resting neuronal [Ca(2+)]i was elevated in FHM1, with loss of compartmentalization between synapses and neuronal shafts. The percentage of calcium-overloaded neurons was increased. Neuronal [Ca(2+)]i surge during CSD was faster and larger, and post-CSD oligemia and hemoglobin desaturation were more severe in FHM1 brains.
INTERPRETATION: Our findings provide a mechanism for enhanced CSD susceptibility in hemiplegic migraine. Abnormal synaptic Ca(2+) homeostasis and morphology may contribute to chronic neurodegenerative changes as well as enhanced vulnerability to ischemia in migraineurs.
© 2015 American Neurological Association.

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Year:  2015        PMID: 26032020      PMCID: PMC4515184          DOI: 10.1002/ana.24449

Source DB:  PubMed          Journal:  Ann Neurol        ISSN: 0364-5134            Impact factor:   10.422


  84 in total

1.  Modulation of transmitter release by presynaptic resting potential and background calcium levels.

Authors:  Gautam B Awatramani; Gareth D Price; Laurence O Trussell
Journal:  Neuron       Date:  2005-10-06       Impact factor: 17.173

2.  In vivo imaging of amyloid-beta deposits in mouse brain with multiphoton microscopy.

Authors:  Jesse Skoch; Gregory A Hickey; Stephen T Kajdasz; Bradley T Hyman; Brian J Bacskai
Journal:  Methods Mol Biol       Date:  2005

Review 3.  Migraine and white matter hyperintensities.

Authors:  Alyx Porter; Jonathan P Gladstone; David W Dodick
Journal:  Curr Pain Headache Rep       Date:  2005-08

4.  High cortical spreading depression susceptibility and migraine-associated symptoms in Ca(v)2.1 S218L mice.

Authors:  Arn M J M van den Maagdenberg; Tommaso Pizzorusso; Simon Kaja; Nicole Terpolilli; Maryna Shapovalova; Freek E Hoebeek; Curtis F Barrett; Lisa Gherardini; Rob C G van de Ven; Boyan Todorov; Ludo A M Broos; Angelita Tottene; Zhenyu Gao; Mariann Fodor; Chris I De Zeeuw; Rune R Frants; Nikolaus Plesnila; Jaap J Plomp; Daniela Pietrobon; Michel D Ferrari
Journal:  Ann Neurol       Date:  2010-01       Impact factor: 10.422

5.  Pronounced hypoperfusion during spreading depression in mouse cortex.

Authors:  Cenk Ayata; Hwa Kyoung Shin; Salvatore Salomone; Yasemin Ozdemir-Gursoy; David A Boas; Andrew K Dunn; Michael A Moskowitz
Journal:  J Cereb Blood Flow Metab       Date:  2004-10       Impact factor: 6.200

6.  Spine-neck geometry determines NMDA receptor-dependent Ca2+ signaling in dendrites.

Authors:  Jun Noguchi; Masanori Matsuzaki; Graham C R Ellis-Davies; Haruo Kasai
Journal:  Neuron       Date:  2005-05-19       Impact factor: 17.173

7.  Effects of familial hemiplegic migraine type 1 mutations on neuronal P/Q-type Ca2+ channel activity and inhibitory synaptic transmission.

Authors:  Yu-Qing Cao; Richard W Tsien
Journal:  Proc Natl Acad Sci U S A       Date:  2005-02-07       Impact factor: 11.205

8.  Distinct roles for sodium, chloride, and calcium in excitotoxic dendritic injury and recovery.

Authors:  M J Hasbani; K L Hyrc; B T Faddis; C Romano; M P Goldberg
Journal:  Exp Neurol       Date:  1998-11       Impact factor: 5.330

9.  Specific kinetic alterations of human CaV2.1 calcium channels produced by mutation S218L causing familial hemiplegic migraine and delayed cerebral edema and coma after minor head trauma.

Authors:  Angelita Tottene; Francesca Pivotto; Tommaso Fellin; Tiziana Cesetti; Arn M J M van den Maagdenberg; Daniela Pietrobon
Journal:  J Biol Chem       Date:  2005-03-02       Impact factor: 5.157

10.  Familial hemiplegic migraine type 1 mutations K1336E, W1684R, and V1696I alter Cav2.1 Ca2+ channel gating: evidence for beta-subunit isoform-specific effects.

Authors:  Carmen Müllner; Ludo A M Broos; Arn M J M van den Maagdenberg; Jörg Striessnig
Journal:  J Biol Chem       Date:  2004-09-23       Impact factor: 5.157

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  14 in total

1.  Relief Following Chronic Stress Augments Spreading Depolarization Susceptibility in Familial Hemiplegic Migraine Mice.

Authors:  Mustafa Balkaya; Jessica L Seidel; Homa Sadeghian; Tao Qin; David Y Chung; Katharina Eikermann-Haerter; Arn M J M van den Maagdenberg; Michel D Ferrari; Cenk Ayata
Journal:  Neuroscience       Date:  2019-07-09       Impact factor: 3.590

2.  High-mobility group box 1 is an important mediator of microglial activation induced by cortical spreading depression.

Authors:  Tsubasa Takizawa; Mamoru Shibata; Yohei Kayama; Toshihiko Shimizu; Haruki Toriumi; Taeko Ebine; Miyuki Unekawa; Anri Koh; Akihiko Yoshimura; Norihiro Suzuki
Journal:  J Cereb Blood Flow Metab       Date:  2016-07-20       Impact factor: 6.200

Review 3.  Recording, analysis, and interpretation of spreading depolarizations in neurointensive care: Review and recommendations of the COSBID research group.

Authors:  Jens P Dreier; Martin Fabricius; Cenk Ayata; Oliver W Sakowitz; C William Shuttleworth; Christian Dohmen; Rudolf Graf; Peter Vajkoczy; Raimund Helbok; Michiyasu Suzuki; Alois J Schiefecker; Sebastian Major; Maren Kl Winkler; Eun-Jeung Kang; Denny Milakara; Ana I Oliveira-Ferreira; Clemens Reiffurth; Gajanan S Revankar; Kazutaka Sugimoto; Nora F Dengler; Nils Hecht; Brandon Foreman; Bart Feyen; Daniel Kondziella; Christian K Friberg; Henning Piilgaard; Eric S Rosenthal; M Brandon Westover; Anna Maslarova; Edgar Santos; Daniel Hertle; Renán Sánchez-Porras; Sharon L Jewell; Baptiste Balança; Johannes Platz; Jason M Hinzman; Janos Lückl; Karl Schoknecht; Michael Schöll; Christoph Drenckhahn; Delphine Feuerstein; Nina Eriksen; Viktor Horst; Julia S Bretz; Paul Jahnke; Michael Scheel; Georg Bohner; Egill Rostrup; Bente Pakkenberg; Uwe Heinemann; Jan Claassen; Andrew P Carlson; Christina M Kowoll; Svetlana Lublinsky; Yoash Chassidim; Ilan Shelef; Alon Friedman; Gerrit Brinker; Michael Reiner; Sergei A Kirov; R David Andrew; Eszter Farkas; Erdem Güresir; Hartmut Vatter; Lee S Chung; K C Brennan; Thomas Lieutaud; Stephane Marinesco; Andrew Ir Maas; Juan Sahuquillo; Markus A Dahlem; Frank Richter; Oscar Herreras; Martyn G Boutelle; David O Okonkwo; M Ross Bullock; Otto W Witte; Peter Martus; Arn Mjm van den Maagdenberg; Michel D Ferrari; Rick M Dijkhuizen; Lori A Shutter; Norberto Andaluz; André P Schulte; Brian MacVicar; Tomas Watanabe; Johannes Woitzik; Martin Lauritzen; Anthony J Strong; Jed A Hartings
Journal:  J Cereb Blood Flow Metab       Date:  2016-01-01       Impact factor: 6.200

4.  Neuronal complexity is attenuated in preclinical models of migraine and restored by HDAC6 inhibition.

Authors:  Zachariah Bertels; Harinder Singh; Isaac Dripps; Kendra Siegersma; Alycia F Tipton; Wiktor D Witkowski; Zoie Sheets; Pal Shah; Catherine Conway; Elizaveta Mangutov; Mei Ao; Valentina Petukhova; Bhargava Karumudi; Pavel A Petukhov; Serapio M Baca; Mark M Rasenick; Amynah A Pradhan
Journal:  Elife       Date:  2021-04-15       Impact factor: 8.140

Review 5.  Structural and Functional Brain Changes in Migraine.

Authors:  Sait Ashina; Enrico Bentivegna; Paolo Martelletti; Katharina Eikermann-Haerter
Journal:  Pain Ther       Date:  2021-02-16

Review 6.  Exploring the role of microglia in cortical spreading depression in neurological disease.

Authors:  Mamoru Shibata; Norihiro Suzuki
Journal:  J Cereb Blood Flow Metab       Date:  2017-01-01       Impact factor: 6.200

7.  Drosophila CaV2 channels harboring human migraine mutations cause synapse hyperexcitability that can be suppressed by inhibition of a Ca2+ store release pathway.

Authors:  Douglas J Brusich; Ashlyn M Spring; Thomas D James; Catherine J Yeates; Timothy H Helms; C Andrew Frank
Journal:  PLoS Genet       Date:  2018-08-06       Impact factor: 5.917

8.  In vivo imaging reveals rapid astrocyte depletion and axon damage in a model of neuromyelitis optica-related pathology.

Authors:  Marina Herwerth; Sudhakar Reddy Kalluri; Rajneesh Srivastava; Tatjana Kleele; Selin Kenet; Zsolt Illes; Doron Merkler; Jeffrey L Bennett; Thomas Misgeld; Bernhard Hemmer
Journal:  Ann Neurol       Date:  2016-04-18       Impact factor: 10.422

9.  Lipidomic analysis of serum samples from migraine patients.

Authors:  Caixia Ren; Jia Liu; Juntuo Zhou; Hui Liang; Yayun Wang; Yinping Sun; Bin Ma; Yuxin Yin
Journal:  Lipids Health Dis       Date:  2018-02-02       Impact factor: 3.876

10.  In Vivo Imaging of Microglia With Multiphoton Microscopy.

Authors:  Carmen Hierro-Bujalance; Brian J Bacskai; Monica Garcia-Alloza
Journal:  Front Aging Neurosci       Date:  2018-07-19       Impact factor: 5.750

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