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Arrestin translocation is induced at a critical threshold of visual signaling and is superstoichiometric to bleached rhodopsin.

Publication ,  Journal Article
Strissel, KJ; Sokolov, M; Trieu, LH; Arshavsky, VY
Published in: J Neurosci
January 25, 2006

Light induces massive translocation of major signaling proteins between the subcellular compartments of photoreceptors. Among them is visual arrestin responsible for quenching photoactivated rhodopsin, which moves into photoreceptor outer segments during illumination. Here, for the first time, we determined the light dependency of arrestin translocation, which revealed two key features of this phenomenon. First, arrestin translocation is triggered when the light intensity approaches a critical threshold corresponding to the upper limits of the normal range of rod responsiveness. Second, the amount of arrestin entering rod outer segments under these conditions is superstoichiometric to the amount of photoactivated rhodopsin, exceeding it by at least 30-fold. We further showed that it is not the absolute amount of excited rhodopsin but rather the extent of downstream cascade activity that triggers translocation. Finally, we demonstrated that the total amount of arrestin in the rod cell is nearly 10-fold higher than previously thought and therefore sufficient to inactivate the entire pool of rhodopsin at any level of illumination. Thus, arrestin movement to the outer segment leads to an increase in the free arrestin concentration and thereby may serve as a powerful mechanism of light adaptation.

Duke Scholars

Published In

J Neurosci

DOI

EISSN

1529-2401

Publication Date

January 25, 2006

Volume

26

Issue

4

Start / End Page

1146 / 1153

Location

United States

Related Subject Headings

  • Transducin
  • Signal Transduction
  • Rod Cell Outer Segment
  • Rhodopsin
  • Recombinant Fusion Proteins
  • Protein Transport
  • Photobleaching
  • Neurology & Neurosurgery
  • Molecular Motor Proteins
  • Models, Biological
 

Citation

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MLA
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Strissel, K. J., Sokolov, M., Trieu, L. H., & Arshavsky, V. Y. (2006). Arrestin translocation is induced at a critical threshold of visual signaling and is superstoichiometric to bleached rhodopsin. J Neurosci, 26(4), 1146–1153. https://doi.org/10.1523/JNEUROSCI.4289-05.2006
Strissel, Katherine J., Maxim Sokolov, Lynn H. Trieu, and Vadim Y. Arshavsky. “Arrestin translocation is induced at a critical threshold of visual signaling and is superstoichiometric to bleached rhodopsin.J Neurosci 26, no. 4 (January 25, 2006): 1146–53. https://doi.org/10.1523/JNEUROSCI.4289-05.2006.
Strissel KJ, Sokolov M, Trieu LH, Arshavsky VY. Arrestin translocation is induced at a critical threshold of visual signaling and is superstoichiometric to bleached rhodopsin. J Neurosci. 2006 Jan 25;26(4):1146–53.
Strissel, Katherine J., et al. “Arrestin translocation is induced at a critical threshold of visual signaling and is superstoichiometric to bleached rhodopsin.J Neurosci, vol. 26, no. 4, Jan. 2006, pp. 1146–53. Pubmed, doi:10.1523/JNEUROSCI.4289-05.2006.
Strissel KJ, Sokolov M, Trieu LH, Arshavsky VY. Arrestin translocation is induced at a critical threshold of visual signaling and is superstoichiometric to bleached rhodopsin. J Neurosci. 2006 Jan 25;26(4):1146–1153.

Published In

J Neurosci

DOI

EISSN

1529-2401

Publication Date

January 25, 2006

Volume

26

Issue

4

Start / End Page

1146 / 1153

Location

United States

Related Subject Headings

  • Transducin
  • Signal Transduction
  • Rod Cell Outer Segment
  • Rhodopsin
  • Recombinant Fusion Proteins
  • Protein Transport
  • Photobleaching
  • Neurology & Neurosurgery
  • Molecular Motor Proteins
  • Models, Biological