Contiguous hydrophobic and charged surface patches in short helix-constrained peptides drive cell permeability

SR Perry, TA Hill, AD de Araujo, HN Hoang… - Organic & biomolecular …, 2018 - pubs.rsc.org
Most protein–protein interactions occur inside cells. Peptides can inhibit protein–protein
interactions but tend not to enter cells. We systematically compare cell permeability for 8–12 …

[引用][C] Contiguous hydrophobic and charged surface patches in short helix-constrained peptides drive cell permeability

SR Perry, TA Hill, AD de Araujo… - Organic & …, 2018 - espace.library.uq.edu.au
Most protein-protein interactions occur inside cells. Peptides can inhibit protein-protein
interactions but tend not to enter cells. We systematically compare cell permeability for 8-12 …

Contiguous hydrophobic and charged surface patches in short helix-constrained peptides drive cell permeability

SR Perry, TA Hill, AD de Araujo… - Organic & …, 2018 - pubmed.ncbi.nlm.nih.gov
Most protein-protein interactions occur inside cells. Peptides can inhibit protein-protein
interactions but tend not to enter cells. We systematically compare cell permeability for 8-12 …

Contiguous hydrophobic and charged surface patches in short helix-constrained peptides drive cell permeability

SR Perry, TA Hill, AD de Araujo, HN Hoang… - Organic & Biomolecular …, 2018 - Elsevier
Most protein–protein interactions occur inside cells. Peptides can inhibit protein–protein
interactions but tend not to enter cells. We systematically compare cell permeability for 8–12 …

Contiguous hydrophobic and charged surface patches in short helix-constrained peptides drive cell permeability.

SR Perry, TA Hill, AD de Araujo, HN Hoang… - Organic & …, 2018 - europepmc.org
Most protein-protein interactions occur inside cells. Peptides can inhibit protein-protein
interactions but tend not to enter cells. We systematically compare cell permeability for 8-12 …