1. Academic Validation
  2. The anti-cancer peptide, PNC-27, induces tumor cell lysis as the intact peptide

The anti-cancer peptide, PNC-27, induces tumor cell lysis as the intact peptide

  • Cancer Chemother Pharmacol. 2010 Jul;66(2):325-31. doi: 10.1007/s00280-009-1166-7.
Kelley A Sookraj 1 Wilbur B Bowne Victor Adler Ehsan Sarafraz-Yazdi Josef Michl Matthew R Pincus
Affiliations

Affiliation

  • 1 Department of Surgery, SUNY Downstate Medical Center, 450 Clarkson Avenue, Brooklyn, NY 11203, USA.
Abstract

Purpose: PNC-27, a peptide that contains an HDM-2-binding domain from p53 attached to a membrane-penetrating peptide on its carboxyl terminal end, is cytotoxic to Cancer, but not normal, cells. It forms transmembrane pores in the Cancer cell membrane. Our purpose is to determine if the whole peptide or critical fragments induce pore formation in Cancer cells.

Methods: We have prepared PNC-27 with a green fluorescent label on its amino terminus and a red fluorescent label on its carboxyl terminus and treated MCF-7 breast Cancer cells and untransformed MCF-10-2A breast epithelial cells with this double-labeled peptide to determine if combined yellow fluorescence occurs in the membrane of the Cancer cells during Cancer cell killing.

Results: At 30 min, there is significant combined punctate yellow fluorescence, indicative of intact peptide, in the cell membrane of Cancer cells that increases during cancer Cell Lysis. MCF-10-2A cells show initial (30 min) uniform combined yellow membrane fluorescence that subsequently disappears. Unlike the Cancer cells, these untransformed cells remain viable.

Conclusions: PNC-27 induces Cancer cell membrane lysis by acting as the whole peptide, not fragments. The punctate yellow fluorescence is due to interaction of PNC-27 with intramembrane targets of MCF-7 cells that do not exist in the membrane of the untransformed cell line. This interaction increases the lifetime of PNC-27. Absence of these targets in the membranes of the untransformed MCF-10-2A cells results in initial uniform fluorescence of the double-labeled peptide in their membranes after which the peptide is degraded.

Figures
Products
  • Cat. No.
    Product Name
    Description
    Target
    Research Area
  • HY-P3508
    Anticancer Peptide