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Functional Genomic Analyses of Mendelian and Sporadic Disease Identify Impaired eIF2α Signaling as a Generalizable Mechanism for Dystonia.

Publication ,  Journal Article
Rittiner, JE; Caffall, ZF; Hernández-Martinez, R; Sanderson, SM; Pearson, JL; Tsukayama, KK; Liu, AY; Xiao, C; Tracy, S; Shipman, MK; Hickey, P ...
Published in: Neuron
December 21, 2016

Dystonia is a brain disorder causing involuntary, often painful movements. Apart from a role for dopamine deficiency in some forms, the cellular mechanisms underlying most dystonias are currently unknown. Here, we discover a role for deficient eIF2α signaling in DYT1 dystonia, a rare inherited generalized form, through a genome-wide RNAi screen. Subsequent experiments including patient-derived cells and a mouse model support both a pathogenic role and therapeutic potential for eIF2α pathway perturbations. We further find genetic and functional evidence supporting similar pathway impairment in patients with sporadic cervical dystonia, due to rare coding variation in the eIF2α effector ATF4. Considering also that another dystonia, DYT16, involves a gene upstream of the eIF2α pathway, these results mechanistically link multiple forms of dystonia and put forth a new overall cellular mechanism for dystonia pathogenesis, impairment of eIF2α signaling, a pathway known for its roles in cellular stress responses and synaptic plasticity.

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Published In

Neuron

DOI

EISSN

1097-4199

Publication Date

December 21, 2016

Volume

92

Issue

6

Start / End Page

1238 / 1251

Location

United States

Related Subject Headings

  • Torticollis
  • Signal Transduction
  • Neuronal Plasticity
  • Neurology & Neurosurgery
  • Molecular Chaperones
  • Mice
  • Humans
  • HEK293 Cells
  • Genomics
  • Eukaryotic Initiation Factor-2
 

Citation

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Rittiner, J. E., Caffall, Z. F., Hernández-Martinez, R., Sanderson, S. M., Pearson, J. L., Tsukayama, K. K., … Calakos, N. (2016). Functional Genomic Analyses of Mendelian and Sporadic Disease Identify Impaired eIF2α Signaling as a Generalizable Mechanism for Dystonia. Neuron, 92(6), 1238–1251. https://doi.org/10.1016/j.neuron.2016.11.012
Rittiner, Joseph E., Zachary F. Caffall, Ricardo Hernández-Martinez, Sydney M. Sanderson, James L. Pearson, Kaylin K. Tsukayama, Anna Y. Liu, et al. “Functional Genomic Analyses of Mendelian and Sporadic Disease Identify Impaired eIF2α Signaling as a Generalizable Mechanism for Dystonia.Neuron 92, no. 6 (December 21, 2016): 1238–51. https://doi.org/10.1016/j.neuron.2016.11.012.
Rittiner JE, Caffall ZF, Hernández-Martinez R, Sanderson SM, Pearson JL, Tsukayama KK, et al. Functional Genomic Analyses of Mendelian and Sporadic Disease Identify Impaired eIF2α Signaling as a Generalizable Mechanism for Dystonia. Neuron. 2016 Dec 21;92(6):1238–51.
Rittiner, Joseph E., et al. “Functional Genomic Analyses of Mendelian and Sporadic Disease Identify Impaired eIF2α Signaling as a Generalizable Mechanism for Dystonia.Neuron, vol. 92, no. 6, Dec. 2016, pp. 1238–51. Pubmed, doi:10.1016/j.neuron.2016.11.012.
Rittiner JE, Caffall ZF, Hernández-Martinez R, Sanderson SM, Pearson JL, Tsukayama KK, Liu AY, Xiao C, Tracy S, Shipman MK, Hickey P, Johnson J, Scott B, Stacy M, Saunders-Pullman R, Bressman S, Simonyan K, Sharma N, Ozelius LJ, Cirulli ET, Calakos N. Functional Genomic Analyses of Mendelian and Sporadic Disease Identify Impaired eIF2α Signaling as a Generalizable Mechanism for Dystonia. Neuron. 2016 Dec 21;92(6):1238–1251.
Journal cover image

Published In

Neuron

DOI

EISSN

1097-4199

Publication Date

December 21, 2016

Volume

92

Issue

6

Start / End Page

1238 / 1251

Location

United States

Related Subject Headings

  • Torticollis
  • Signal Transduction
  • Neuronal Plasticity
  • Neurology & Neurosurgery
  • Molecular Chaperones
  • Mice
  • Humans
  • HEK293 Cells
  • Genomics
  • Eukaryotic Initiation Factor-2