| Literature DB >> 33174390 |
Anil K Gorle1, Thomas Haselhorst1, Samantha J Katner2,3, Arun V Everest-Dass1, James D Hampton2,4, Erica J Peterson2,4, Jennifer E Koblinski4,5, Eriko Katsuta6, Kazuaki Takabe6, Mark von Itzstein1, Susan J Berners-Price1, Nicholas P Farrell1,2,4.
Abstract
1 H NMR spectroscopic studies on the 1:1 adduct of the pentasaccharide Fondaparinux (FPX) and the substitution-inert polynuclear platinum complex TriplatinNC show significant modulation of geometry around the glycosidic linkages of the FPX constituent monosaccharides. FPX is a valid model for the highly sulfated cell signalling molecule heparan sulfate (HS). The conformational ratio of the 1 C4 :2 S0 forms of the FPX residue IdoA(2S) is altered from ca. 35:65 (free FPX) to ca. 75:25 in the adduct; the first demonstration of a small molecule affecting conformational changes on a HS oligosaccharide. Functional consequences of such binding are suggested to be inhibition of HS cleavage in MDA-MB-231 triple-negative breast cancer (TNBC) cells. We further describe inhibition of metastasis by TriplatinNC in the TNBC 4T1 syngeneic tumour model. Our work provides insight into a novel approach for design of platinum drugs (and coordination compounds in general) with intrinsic anti-metastatic potential.Entities:
Keywords: anti-metastatic; anticancer; computational chemistry; glycosaminoglycans; heparan sulfate
Mesh:
Substances:
Year: 2020 PMID: 33174390 PMCID: PMC7902481 DOI: 10.1002/anie.202013749
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336