Cargando…

Grifolin, neogrifolin and confluentin from the terricolous polypore Albatrellus flettii suppress KRAS expression in human colon cancer cells

In our search for bioactive mushrooms native to British Columbia, we determined that the ethanol extracts from fruiting bodies of the terrestrial polypore Albatrellus flettii had potent anti-cell viability activity. Using bioassay-guided fractionation, mass spectrometry and nuclear magnetic resonanc...

Descripción completa

Detalles Bibliográficos
Autores principales: Yaqoob, Almas, Li, Wai Ming, Liu, Victor, Wang, Chuyi, Mackedenski, Sebastian, Tackaberry, Linda E., Massicotte, Hugues B., Egger, Keith N., Reimer, Kerry, Lee, Chow H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7199964/
https://www.ncbi.nlm.nih.gov/pubmed/32369483
http://dx.doi.org/10.1371/journal.pone.0231948
_version_ 1783529245867245568
author Yaqoob, Almas
Li, Wai Ming
Liu, Victor
Wang, Chuyi
Mackedenski, Sebastian
Tackaberry, Linda E.
Massicotte, Hugues B.
Egger, Keith N.
Reimer, Kerry
Lee, Chow H.
author_facet Yaqoob, Almas
Li, Wai Ming
Liu, Victor
Wang, Chuyi
Mackedenski, Sebastian
Tackaberry, Linda E.
Massicotte, Hugues B.
Egger, Keith N.
Reimer, Kerry
Lee, Chow H.
author_sort Yaqoob, Almas
collection PubMed
description In our search for bioactive mushrooms native to British Columbia, we determined that the ethanol extracts from fruiting bodies of the terrestrial polypore Albatrellus flettii had potent anti-cell viability activity. Using bioassay-guided fractionation, mass spectrometry and nuclear magnetic resonance, we successfully isolated three known compounds (grifolin, neogrifolin and confluentin). These compounds represent the major anti-cell viability components from the ethanol extracts of A. flettii. We also identified a novel biological activity for these compounds, specifically in down-regulating KRAS expression in two human colon cancer cell lines. Relatively little is known about the anti-cell viability activity and mechanism of action of confluentin. For the first time, we show the ability of confluentin to induce apoptosis and arrest the cell cycle at the G2/M phase in SW480 human colon cancer cells. The oncogenic insulin-like growth factor 2 mRNA-binding protein 1 (IMP1) has been previously shown to regulate KRAS mRNA expression in colon cancer cells, possibly through its ability to bind to the KRAS transcript. Using a fluorescence polarization assay, we show that confluentin dose-dependently inhibits the physical interaction between KRAS RNA and full-length IMP1. The inhibition also occurs with truncated IMP1 containing the KH1 to KH4 domain (KH1to4 IMP1), but not with the di-domain KH3 and KH4 (KH3&4 IMP1). In addition, unlike the control antibiotic neomycin, grifolin, neogrifolin and confluentin do not bind to KRAS RNA. These results suggest that confluentin inhibits IMP1-KRAS RNA interaction by binding to the KH1&2 di-domains of IMP1. Since the molecular interaction between IMP1 and its target RNAs is a pre-requisite for the oncogenic function of IMP1, confluentin should be further explored as a potential inhibitor of IMP1 in vivo.
format Online
Article
Text
id pubmed-7199964
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-71999642020-05-12 Grifolin, neogrifolin and confluentin from the terricolous polypore Albatrellus flettii suppress KRAS expression in human colon cancer cells Yaqoob, Almas Li, Wai Ming Liu, Victor Wang, Chuyi Mackedenski, Sebastian Tackaberry, Linda E. Massicotte, Hugues B. Egger, Keith N. Reimer, Kerry Lee, Chow H. PLoS One Research Article In our search for bioactive mushrooms native to British Columbia, we determined that the ethanol extracts from fruiting bodies of the terrestrial polypore Albatrellus flettii had potent anti-cell viability activity. Using bioassay-guided fractionation, mass spectrometry and nuclear magnetic resonance, we successfully isolated three known compounds (grifolin, neogrifolin and confluentin). These compounds represent the major anti-cell viability components from the ethanol extracts of A. flettii. We also identified a novel biological activity for these compounds, specifically in down-regulating KRAS expression in two human colon cancer cell lines. Relatively little is known about the anti-cell viability activity and mechanism of action of confluentin. For the first time, we show the ability of confluentin to induce apoptosis and arrest the cell cycle at the G2/M phase in SW480 human colon cancer cells. The oncogenic insulin-like growth factor 2 mRNA-binding protein 1 (IMP1) has been previously shown to regulate KRAS mRNA expression in colon cancer cells, possibly through its ability to bind to the KRAS transcript. Using a fluorescence polarization assay, we show that confluentin dose-dependently inhibits the physical interaction between KRAS RNA and full-length IMP1. The inhibition also occurs with truncated IMP1 containing the KH1 to KH4 domain (KH1to4 IMP1), but not with the di-domain KH3 and KH4 (KH3&4 IMP1). In addition, unlike the control antibiotic neomycin, grifolin, neogrifolin and confluentin do not bind to KRAS RNA. These results suggest that confluentin inhibits IMP1-KRAS RNA interaction by binding to the KH1&2 di-domains of IMP1. Since the molecular interaction between IMP1 and its target RNAs is a pre-requisite for the oncogenic function of IMP1, confluentin should be further explored as a potential inhibitor of IMP1 in vivo. Public Library of Science 2020-05-05 /pmc/articles/PMC7199964/ /pubmed/32369483 http://dx.doi.org/10.1371/journal.pone.0231948 Text en © 2020 Yaqoob et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Yaqoob, Almas
Li, Wai Ming
Liu, Victor
Wang, Chuyi
Mackedenski, Sebastian
Tackaberry, Linda E.
Massicotte, Hugues B.
Egger, Keith N.
Reimer, Kerry
Lee, Chow H.
Grifolin, neogrifolin and confluentin from the terricolous polypore Albatrellus flettii suppress KRAS expression in human colon cancer cells
title Grifolin, neogrifolin and confluentin from the terricolous polypore Albatrellus flettii suppress KRAS expression in human colon cancer cells
title_full Grifolin, neogrifolin and confluentin from the terricolous polypore Albatrellus flettii suppress KRAS expression in human colon cancer cells
title_fullStr Grifolin, neogrifolin and confluentin from the terricolous polypore Albatrellus flettii suppress KRAS expression in human colon cancer cells
title_full_unstemmed Grifolin, neogrifolin and confluentin from the terricolous polypore Albatrellus flettii suppress KRAS expression in human colon cancer cells
title_short Grifolin, neogrifolin and confluentin from the terricolous polypore Albatrellus flettii suppress KRAS expression in human colon cancer cells
title_sort grifolin, neogrifolin and confluentin from the terricolous polypore albatrellus flettii suppress kras expression in human colon cancer cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7199964/
https://www.ncbi.nlm.nih.gov/pubmed/32369483
http://dx.doi.org/10.1371/journal.pone.0231948
work_keys_str_mv AT yaqoobalmas grifolinneogrifolinandconfluentinfromtheterricolouspolyporealbatrellusflettiisuppresskrasexpressioninhumancoloncancercells
AT liwaiming grifolinneogrifolinandconfluentinfromtheterricolouspolyporealbatrellusflettiisuppresskrasexpressioninhumancoloncancercells
AT liuvictor grifolinneogrifolinandconfluentinfromtheterricolouspolyporealbatrellusflettiisuppresskrasexpressioninhumancoloncancercells
AT wangchuyi grifolinneogrifolinandconfluentinfromtheterricolouspolyporealbatrellusflettiisuppresskrasexpressioninhumancoloncancercells
AT mackedenskisebastian grifolinneogrifolinandconfluentinfromtheterricolouspolyporealbatrellusflettiisuppresskrasexpressioninhumancoloncancercells
AT tackaberrylindae grifolinneogrifolinandconfluentinfromtheterricolouspolyporealbatrellusflettiisuppresskrasexpressioninhumancoloncancercells
AT massicottehuguesb grifolinneogrifolinandconfluentinfromtheterricolouspolyporealbatrellusflettiisuppresskrasexpressioninhumancoloncancercells
AT eggerkeithn grifolinneogrifolinandconfluentinfromtheterricolouspolyporealbatrellusflettiisuppresskrasexpressioninhumancoloncancercells
AT reimerkerry grifolinneogrifolinandconfluentinfromtheterricolouspolyporealbatrellusflettiisuppresskrasexpressioninhumancoloncancercells
AT leechowh grifolinneogrifolinandconfluentinfromtheterricolouspolyporealbatrellusflettiisuppresskrasexpressioninhumancoloncancercells