Triple Effect of Mimetic Peptides Interfering with Neural Cell Adhesion Molecule Homophilic Cis Interactions

Research output: Contribution to journalJournal articleResearchpeer-review

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Triple Effect of Mimetic Peptides Interfering with Neural Cell Adhesion Molecule Homophilic Cis Interactions. / Li, S. Z.; Kolkova, Kateryna; Rudenko, Olga; Soroka, V.; Poulsen, Flemming M.; Bock, Elisabeth; Berezin, Vladimir.

In: Biochemistry, Vol. 44, No. 13, 2005, p. 5034-5040.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Li, SZ, Kolkova, K, Rudenko, O, Soroka, V, Poulsen, FM, Bock, E & Berezin, V 2005, 'Triple Effect of Mimetic Peptides Interfering with Neural Cell Adhesion Molecule Homophilic Cis Interactions', Biochemistry, vol. 44, no. 13, pp. 5034-5040. https://doi.org/10.1021/bi0480133

APA

Li, S. Z., Kolkova, K., Rudenko, O., Soroka, V., Poulsen, F. M., Bock, E., & Berezin, V. (2005). Triple Effect of Mimetic Peptides Interfering with Neural Cell Adhesion Molecule Homophilic Cis Interactions. Biochemistry, 44(13), 5034-5040. https://doi.org/10.1021/bi0480133

Vancouver

Li SZ, Kolkova K, Rudenko O, Soroka V, Poulsen FM, Bock E et al. Triple Effect of Mimetic Peptides Interfering with Neural Cell Adhesion Molecule Homophilic Cis Interactions. Biochemistry. 2005;44(13):5034-5040. https://doi.org/10.1021/bi0480133

Author

Li, S. Z. ; Kolkova, Kateryna ; Rudenko, Olga ; Soroka, V. ; Poulsen, Flemming M. ; Bock, Elisabeth ; Berezin, Vladimir. / Triple Effect of Mimetic Peptides Interfering with Neural Cell Adhesion Molecule Homophilic Cis Interactions. In: Biochemistry. 2005 ; Vol. 44, No. 13. pp. 5034-5040.

Bibtex

@article{07e39a306c3711dcbee902004c4f4f50,
title = "Triple Effect of Mimetic Peptides Interfering with Neural Cell Adhesion Molecule Homophilic Cis Interactions",
abstract = "The neural cell adhesion molecule (NCAM) is pivotal in neural development, regeneration, and learning. Here we characterize two peptides, termed P1-B and P2, derived from the homophilic binding sites in the first two N-terminal immunoglobulin (Ig) modules of NCAM, with regard to their effects on neurite extension and adhesion. To evaluate how interference of these mimetic peptides with NCAM homophilic interactions in cis influences NCAM binding in trans, we employed a coculture system in which PC12-E2 cells were grown on monolayers of fibroblasts with or without NCAM expression and the rate of neurite outgrowth subsequently was analyzed. P2, but not P1-B, induced neurite outgrowth in the absence of NCAM binding in trans. When PC12-E2 cells were grown on monolayers of NCAM-expressing fibroblasts, the effect of both P1-B and P2 on neurite outgrowth was dependent on peptide concentrations. P1-B and P2 acted as conventional antagonists, agonists, and reverse agonists of NCAM at low, intermediate, and high peptide concentrations, respectively. The demonstrated in vitro triple pharmacological effect of mimetic peptides interfering with the NCAM homophilic cis binding will be valuable for the understanding of the actions of these mimetics in vivo. ",
author = "Li, {S. Z.} and Kateryna Kolkova and Olga Rudenko and V. Soroka and Poulsen, {Flemming M.} and Elisabeth Bock and Vladimir Berezin",
year = "2005",
doi = "10.1021/bi0480133",
language = "English",
volume = "44",
pages = "5034--5040",
journal = "Biochemistry",
issn = "0006-2960",
publisher = "American Chemical Society",
number = "13",

}

RIS

TY - JOUR

T1 - Triple Effect of Mimetic Peptides Interfering with Neural Cell Adhesion Molecule Homophilic Cis Interactions

AU - Li, S. Z.

AU - Kolkova, Kateryna

AU - Rudenko, Olga

AU - Soroka, V.

AU - Poulsen, Flemming M.

AU - Bock, Elisabeth

AU - Berezin, Vladimir

PY - 2005

Y1 - 2005

N2 - The neural cell adhesion molecule (NCAM) is pivotal in neural development, regeneration, and learning. Here we characterize two peptides, termed P1-B and P2, derived from the homophilic binding sites in the first two N-terminal immunoglobulin (Ig) modules of NCAM, with regard to their effects on neurite extension and adhesion. To evaluate how interference of these mimetic peptides with NCAM homophilic interactions in cis influences NCAM binding in trans, we employed a coculture system in which PC12-E2 cells were grown on monolayers of fibroblasts with or without NCAM expression and the rate of neurite outgrowth subsequently was analyzed. P2, but not P1-B, induced neurite outgrowth in the absence of NCAM binding in trans. When PC12-E2 cells were grown on monolayers of NCAM-expressing fibroblasts, the effect of both P1-B and P2 on neurite outgrowth was dependent on peptide concentrations. P1-B and P2 acted as conventional antagonists, agonists, and reverse agonists of NCAM at low, intermediate, and high peptide concentrations, respectively. The demonstrated in vitro triple pharmacological effect of mimetic peptides interfering with the NCAM homophilic cis binding will be valuable for the understanding of the actions of these mimetics in vivo.

AB - The neural cell adhesion molecule (NCAM) is pivotal in neural development, regeneration, and learning. Here we characterize two peptides, termed P1-B and P2, derived from the homophilic binding sites in the first two N-terminal immunoglobulin (Ig) modules of NCAM, with regard to their effects on neurite extension and adhesion. To evaluate how interference of these mimetic peptides with NCAM homophilic interactions in cis influences NCAM binding in trans, we employed a coculture system in which PC12-E2 cells were grown on monolayers of fibroblasts with or without NCAM expression and the rate of neurite outgrowth subsequently was analyzed. P2, but not P1-B, induced neurite outgrowth in the absence of NCAM binding in trans. When PC12-E2 cells were grown on monolayers of NCAM-expressing fibroblasts, the effect of both P1-B and P2 on neurite outgrowth was dependent on peptide concentrations. P1-B and P2 acted as conventional antagonists, agonists, and reverse agonists of NCAM at low, intermediate, and high peptide concentrations, respectively. The demonstrated in vitro triple pharmacological effect of mimetic peptides interfering with the NCAM homophilic cis binding will be valuable for the understanding of the actions of these mimetics in vivo.

U2 - 10.1021/bi0480133

DO - 10.1021/bi0480133

M3 - Journal article

C2 - 15794641

VL - 44

SP - 5034

EP - 5040

JO - Biochemistry

JF - Biochemistry

SN - 0006-2960

IS - 13

ER -

ID: 1093937