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Analyzing the postulated inhibitory effect of Manumycin A on farnesyltransferase

Manumycin A is postulated to be a specific inhibitor against the farnesyltransferase (FTase) since this effect has been shown in 1993 for yeast FTase. Since then, plenty of studies investigated Manumycin A in human cells as well as in model organisms like Caenorhabditis elegans. Some studies pointed...

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Autores principales: Hagemann, Anna, Altrogge, Philipp Klemens, Kehrenberg, Miriam Caroline Alice, Diehl, Daniel, Jung, Dominik, Weber, Lea, Bachmann, Hagen Sjard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9763582/
https://www.ncbi.nlm.nih.gov/pubmed/36561140
http://dx.doi.org/10.3389/fchem.2022.967947
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author Hagemann, Anna
Altrogge, Philipp Klemens
Kehrenberg, Miriam Caroline Alice
Diehl, Daniel
Jung, Dominik
Weber, Lea
Bachmann, Hagen Sjard
author_facet Hagemann, Anna
Altrogge, Philipp Klemens
Kehrenberg, Miriam Caroline Alice
Diehl, Daniel
Jung, Dominik
Weber, Lea
Bachmann, Hagen Sjard
author_sort Hagemann, Anna
collection PubMed
description Manumycin A is postulated to be a specific inhibitor against the farnesyltransferase (FTase) since this effect has been shown in 1993 for yeast FTase. Since then, plenty of studies investigated Manumycin A in human cells as well as in model organisms like Caenorhabditis elegans. Some studies pointed to additional targets and pathways involved in Manumycin A effects like apoptosis. Therefore, these studies created doubt whether the main mechanism of action of Manumycin A is FTase inhibition. For some of these alternative targets half maximal inhibitory concentrations (IC(50)) of Manumycin A are available, but not for human and C. elegans FTase. So, we aimed to 1) characterize missing C. elegans FTase kinetics, 2) elucidate the IC(50) and K(i) values of Manumycin A on purified human and C. elegans FTase 3) investigate Manumycin A dependent expression of FTase and apoptosis genes in C. elegans. C. elegans FTase has its temperature optimum at 40°C with K(M) of 1.3 µM (farnesylpyrophosphate) and 1.7 µM (protein derivate). Whilst other targets are inhibitable by Manumycin A at the nanomolar level, we found that Manumycin A inhibits cell-free FTase in micromolar concentrations (K(i human) 4.15 μM; K(i) ( C. elegans ) 3.16 μM). Furthermore, our gene expression results correlate with other studies indicating that thioredoxin reductase 1 is the main target of Manumycin A. According to our results, the ability of Manumycin A to inhibit the FTase at the micromolar level is rather neglectable for its cellular effects, so we postulate that the classification as a specific FTase inhibitor is no longer valid.
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spelling pubmed-97635822022-12-21 Analyzing the postulated inhibitory effect of Manumycin A on farnesyltransferase Hagemann, Anna Altrogge, Philipp Klemens Kehrenberg, Miriam Caroline Alice Diehl, Daniel Jung, Dominik Weber, Lea Bachmann, Hagen Sjard Front Chem Chemistry Manumycin A is postulated to be a specific inhibitor against the farnesyltransferase (FTase) since this effect has been shown in 1993 for yeast FTase. Since then, plenty of studies investigated Manumycin A in human cells as well as in model organisms like Caenorhabditis elegans. Some studies pointed to additional targets and pathways involved in Manumycin A effects like apoptosis. Therefore, these studies created doubt whether the main mechanism of action of Manumycin A is FTase inhibition. For some of these alternative targets half maximal inhibitory concentrations (IC(50)) of Manumycin A are available, but not for human and C. elegans FTase. So, we aimed to 1) characterize missing C. elegans FTase kinetics, 2) elucidate the IC(50) and K(i) values of Manumycin A on purified human and C. elegans FTase 3) investigate Manumycin A dependent expression of FTase and apoptosis genes in C. elegans. C. elegans FTase has its temperature optimum at 40°C with K(M) of 1.3 µM (farnesylpyrophosphate) and 1.7 µM (protein derivate). Whilst other targets are inhibitable by Manumycin A at the nanomolar level, we found that Manumycin A inhibits cell-free FTase in micromolar concentrations (K(i human) 4.15 μM; K(i) ( C. elegans ) 3.16 μM). Furthermore, our gene expression results correlate with other studies indicating that thioredoxin reductase 1 is the main target of Manumycin A. According to our results, the ability of Manumycin A to inhibit the FTase at the micromolar level is rather neglectable for its cellular effects, so we postulate that the classification as a specific FTase inhibitor is no longer valid. Frontiers Media S.A. 2022-12-06 /pmc/articles/PMC9763582/ /pubmed/36561140 http://dx.doi.org/10.3389/fchem.2022.967947 Text en Copyright © 2022 Hagemann, Altrogge, Kehrenberg, Diehl, Jung, Weber and Bachmann. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Hagemann, Anna
Altrogge, Philipp Klemens
Kehrenberg, Miriam Caroline Alice
Diehl, Daniel
Jung, Dominik
Weber, Lea
Bachmann, Hagen Sjard
Analyzing the postulated inhibitory effect of Manumycin A on farnesyltransferase
title Analyzing the postulated inhibitory effect of Manumycin A on farnesyltransferase
title_full Analyzing the postulated inhibitory effect of Manumycin A on farnesyltransferase
title_fullStr Analyzing the postulated inhibitory effect of Manumycin A on farnesyltransferase
title_full_unstemmed Analyzing the postulated inhibitory effect of Manumycin A on farnesyltransferase
title_short Analyzing the postulated inhibitory effect of Manumycin A on farnesyltransferase
title_sort analyzing the postulated inhibitory effect of manumycin a on farnesyltransferase
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9763582/
https://www.ncbi.nlm.nih.gov/pubmed/36561140
http://dx.doi.org/10.3389/fchem.2022.967947
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