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Synthesis and anticancer evaluation of [d-Ala]-nocardiotide A.

Authors :
Maharani R
Muhajir MI
Dirgantara JM
Hardianto A
Mayanti T
Harneti D
Nurlelasari
Farabi K
Hidayat AT
Supratman U
Siahaan T
Source :
RSC advances [RSC Adv] 2024 Jan 30; Vol. 14 (6), pp. 4097-4104. Date of Electronic Publication: 2024 Jan 30 (Print Publication: 2024).
Publication Year :
2024

Abstract

Cancer is currently one of the biggest causes of death in the world. Like some microorganisms, cancer cells also develop resistance to various chemotherapy drugs and are termed multidrug resistant (MDR). In this regard, there is a need to develop new alternative anticancer agents. Anticancer peptides (ACPs) with high selectivity and high cell penetration ability are a promising candidate, as well as they are easy to modify. A cyclohexapeptide called nocardiotide A was isolated from the marine sponge Callyspongia sp., which is cytotoxic towards several cancer cells such as MM, 1S, HeLa, and CT26 cells. Previously, nocardiotide A was synthesized with a very low yield owing to its challenging cyclization process. In this study, we synthesized [d-Ala]-nocardiotide A as a derivative of nocardiotide A using a combination of solid phase peptide synthesis (SPPS) and liquid phase peptide synthesis (LPPS). The synthesis was carried out by selecting a d-alanine residue at the C-terminus to give a desired cyclic peptide product with a yield of 31% after purification. The purified [d-Ala]-nocardiotide A was characterized using HR-ToF MS and <superscript>1</superscript> H and <superscript>13</superscript> C-NMR spectroscopy to validate the desired product. The anticancer activity of the peptide was determined against HeLa cancer cell lines with an IC <subscript>50</subscript> value of 52 μM compared to the parent nocardiotide A with an IC <subscript>50</subscript> value of 59 μM. In the future, we aim to mutate various l-amino acids in nocardiotide A to d-amino acids to prepare nocardiotide A derivatives with a higher activity to kill cancer cells with higher membrane permeation. In addition, the mechanism of action of nocardiotide A and its derivatives will be evaluated.<br />Competing Interests: There are no conflicts to declare.<br /> (This journal is © The Royal Society of Chemistry.)

Details

Language :
English
ISSN :
2046-2069
Volume :
14
Issue :
6
Database :
MEDLINE
Journal :
RSC advances
Publication Type :
Academic Journal
Accession number :
38292272
Full Text :
https://doi.org/10.1039/d4ra00025k