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The Tripeptide RER Mimics Secreted Amyloid Precursor Protein-Alpha in Upregulating LTP.

Journal articles  - Journal Article
Morrissey, JA; Bigus, E; Necarsulmer, JC; Srinivasan, V; Peppercorn, K; O'Leary, DJ; Mockett, BG; Tate, WP; Hughes, SM; Parfitt, KD; Abraham, WC
Published in: Frontiers in cellular neuroscience
January 2019

Secreted amyloid precursor protein-alpha (sAPPα), generated by enzymatic processing of the APP, possesses a range of neurotrophic and neuroprotective properties and plays a critical role in the molecular mechanisms of memory and learning. One of the key active regions of sAPPα is the central APP domain (E2) that contains within it the tripeptide sequence, RER. This sequence is exposed on the surface of a coiled coil substructure of E2. RER has by itself displayed memory-enhancing properties, and can protect newly formed engrams from interference in a manner similar to that displayed by sAPPα itself. In order to determine whether RER mimics other properties of sAPPα, we investigated the electrophysiological effects of the N-terminal protected acetylated RER (Ac-RER) and an isoform containing a chiral switch in the first amino acid from an l- to a d-orientation (Ac-rER), on synaptic plasticity. We found that, like sAPPα, exogenous perfusion with nanomolar concentrations of Ac-RER or Ac-rER enhanced the induction and stability of long-term potentiation (LTP) in area CA1 of rat and mouse hippocampal slices, in a protein synthesis- and trafficking-dependent manner. This effect did not occur with a control Ac-AAA or Ac-IFR tripeptide, nor with a full-length sAPPα protein where RER was substituted with AAA. Ac-rER also protected LTP against amyloid-beta (Aβ25 - 35)-induced LTP impairment. Our findings provide further evidence that the RER-containing region of sAPPα is functionally significant and by itself can produce effects similar to those displayed by full length sAPPα, suggesting that this tripeptide, like sAPPα, may have therapeutic potential.

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Published In

Frontiers in cellular neuroscience

DOI

EISSN

1662-5102

ISSN

1662-5102

Publication Date

January 2019

Volume

13

Start / End Page

459

Related Subject Headings

  • 5202 Biological psychology
  • 3209 Neurosciences
  • 3101 Biochemistry and cell biology
 

Citation

APA
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ICMJE
MLA
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Morrissey, J. A., Bigus, E., Necarsulmer, J. C., Srinivasan, V., Peppercorn, K., O’Leary, D. J., … Abraham, W. C. (2019). The Tripeptide RER Mimics Secreted Amyloid Precursor Protein-Alpha in Upregulating LTP. Frontiers in Cellular Neuroscience, 13, 459. https://doi.org/10.3389/fncel.2019.00459
Morrissey, Jodi A., Erin Bigus, Julie C. Necarsulmer, Vinay Srinivasan, Katie Peppercorn, Daniel J. O’Leary, Bruce G. Mockett, et al. “The Tripeptide RER Mimics Secreted Amyloid Precursor Protein-Alpha in Upregulating LTP.Frontiers in Cellular Neuroscience 13 (January 2019): 459. https://doi.org/10.3389/fncel.2019.00459.
Morrissey JA, Bigus E, Necarsulmer JC, Srinivasan V, Peppercorn K, O’Leary DJ, et al. The Tripeptide RER Mimics Secreted Amyloid Precursor Protein-Alpha in Upregulating LTP. Frontiers in cellular neuroscience. 2019 Jan;13:459.
Morrissey, Jodi A., et al. “The Tripeptide RER Mimics Secreted Amyloid Precursor Protein-Alpha in Upregulating LTP.Frontiers in Cellular Neuroscience, vol. 13, Jan. 2019, p. 459. Epmc, doi:10.3389/fncel.2019.00459.
Morrissey JA, Bigus E, Necarsulmer JC, Srinivasan V, Peppercorn K, O’Leary DJ, Mockett BG, Tate WP, Hughes SM, Parfitt KD, Abraham WC. The Tripeptide RER Mimics Secreted Amyloid Precursor Protein-Alpha in Upregulating LTP. Frontiers in cellular neuroscience. 2019 Jan;13:459.

Published In

Frontiers in cellular neuroscience

DOI

EISSN

1662-5102

ISSN

1662-5102

Publication Date

January 2019

Volume

13

Start / End Page

459

Related Subject Headings

  • 5202 Biological psychology
  • 3209 Neurosciences
  • 3101 Biochemistry and cell biology