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HADDAD, Y. HEGER, Z. ADAM, V.
Original Title
Neuroblastoma homing peptide screening using unrefined homology structure of norepinephrine transporter
Type
conference paper
Language
English
Original Abstract
The norepinephrine transporter (hNET) is a potential target for many antidepressants and for neuroblastoma therapeutics. The entrance channel of hNET and also dopamine transporter (DAT) serve as candidate site for targeting by large peptides e.g. α-helix-based. Targeting peptides, also known as homing peptides, are used to direct the delivery of cargo to specific cell types. Peptides of known secondary structures such as α-helix and β-sheet have predictable and stable folding. In this study, approx. 27 peptides, with predictable secondary structures, were evaluated by 20 dockings predictions on unrefined hNET homology model and DAT crystal structure using molecular mechanics (total ~1080 models). As anticipated, peptide size was detrimental for docking in channel space, whereas peptideisoelectrics point did not affect docking. Peptide’s initial non-bonded energy affected docking while overall peptide free energy and initial electrostatic energy did not. Two α-helices showed favorable docking in channel of hNET; namely, GASNGINAYL and SLWERLAYGI with binding energy of - 106.2 kJ/mol and -128.6 kJ/mol, respectively. Prior to in vitro and in vivo applications, future work will focus on development of refined accurate model of hNET and application of solvated docking (in presence of water). This study provides new insight to the development of helix-based therapeutic peptides.
Keywords
targeted therapy; norepinephrine transporter; homing peptide; molecular mechanics; docking
Authors
HADDAD, Y.; HEGER, Z.; ADAM, V.
Released
12. 12. 2016
Publisher
Brno, Czech Republic
Location
Brno
ISBN
978-80-7509-443-8
Book
MendelNet 2016
Pages from
983
Pages to
988
Pages count
6
BibTex
@inproceedings{BUT133385, author="Yazan Abdulmajeed Eyadh {Haddad} and Zbyněk {Heger} and Vojtěch {Adam}", title="Neuroblastoma homing peptide screening using unrefined homology structure of norepinephrine transporter", booktitle="MendelNet 2016", year="2016", pages="983--988", publisher="Brno, Czech Republic", address="Brno", isbn="978-80-7509-443-8" }