4.2 Article

Regulation of Lipoprotein Homeostasis by Self-Assembling Peptides

Journal

ACS APPLIED BIO MATERIALS
Volume 3, Issue 12, Pages 8978-8988

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsabm.0c01229

Keywords

self-assembly; cholesterol metabolism; PCSK9; peptide amphiphiles; LDL

Funding

  1. NJIT startup funds
  2. NJIT Undergraduate Research and Innovation (URI) program
  3. National Eye Institute NIH [R15 EY029504]
  4. National Science Foundation NSF [IIP 1903617]
  5. National Science Foundation GRFP Program [2019288435]

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High levels of serum low-density lipoprotein (LDL) cholesterol contribute to atherosclerosis, a key risk factor of cardiovascular diseases. PCSK9 is a circulatory enzyme that downregulates expression of hepatic LDL receptors, concomitantly increasing serum LDL-C. This work investigates a small, self-assembling peptide, EPep2-8, as a peptide inhibitor of PCSK9. EPep2-8 is a multidomain peptide comprising a self-assembling domain, E2, conjugated to a bioactive domain, Pep2-8, previously shown to inhibit PCSK9. The E2 domain facilitates self-assembly of EPep2-8 into long, nanofibrous polymers with an underlying supramolecular beta-sheet secondary structure. Intermolecular interactions between nanofibers drive EPep2-8 to form a thixotropic and cytocompatible hydrogel in aqueous and charge-neutral solutions. These properties enable EPep2-8 to be delivered as an in situ depot for regulation of lipoprotein homeostasis. In surface plasmon resonance studies, EPep2-8 bound specifically to PCSK9 with an apparent, noncovalent, and irreversible dissociation, significantly improving the binding affinity of Pep2-8 alone (K-D = 667 +/- 48 nM). Increased binding affinity of EPep2-8 is primarily due to the superstoichiometric interaction of the peptide with PCSK9. Promisingly, EPep2-8 retains bioactivity in vitro, engendering dose-dependent uptake of LDL-C in hepatocytes. This mechanism of self-assembly on a target site may be a simple method to improve the affinity of peptide inhibitors.

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