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Detection of Small GTPase Prenylation and GTP Binding Using Membrane Fractionation and GTPase-linked Immunosorbent Assay
Published on: November 11, 2018
Hydrophilic anilinogeranyl diphosphate prenyl analogues are Ras function inhibitors
Michael J Roberts1, Jerry M Troutman, Kareem A H Chehade
1Department of Molecular and Cellular Biochemistry, University of Kentucky, Lexington, Kentucky 40536-0084, USA.
Abstract:
Sequential processing of H-Ras by protein farnesyl transferase (FTase), Ras converting enzyme (Rce1), and protein-S-isoprenylcysteine O-methyltransferase (Icmt) to give H-Ras C-terminal farnesyl-S-cysteine methyl ester is required for appropriate H-Ras membrane localization and function, including activation of the mitogen-activated protein kinase (MAPK) cascade. We employed a Xenopus laevis oocyte whole-cell model system to examine whether anilinogeranyl diphosphate analogues of similar shape and size, but with a hydrophobicity different from that of the FTase substrate farnesyl diphosphate (FPP), could ablate biological function of H-Ras. Analysis of oocyte maturation kinetics following microinjection of in vitro analogue-modified H-Ras into isoprenoid-depleted oocytes revealed that analogues with a hydrophobicity near that of FPP supported H-Ras biological function, while the analogues p-nitroanilinogeranyl diphosphate (p-NO2-AGPP), p-cyanoanilinogeranyl diphosphate (p-CN-AGPP), and isoxazolaminogeranyl diphosphate (Isox-GPP) with hydrophobicities 2-5 orders of magnitude lower than that of FPP did not. We found that although H-Ras modified with FPP analogues p-NO2-AGPP, p-CN-AGPP, and Isox-GPP was an efficient substrate for C-terminal postprenylation processing by Rce1 and Icmt, co-injection of H-Ras with analogues p-NO2-AGPP, p-CN-AGPP, or Isox-GPP could not activate MAPK. We propose that H-Ras biological function requires a minimum lipophilicity of the prenyl group to allow important interactions downstream of the C-terminal processed H-Ras protein. The hydrophilic FPP analogues p-NO2-AGPP, p-CN-AGPP, and Isox-GPP are H-Ras function inhibitors (RFIs) and serve as lead compounds for a unique class of potential anticancer therapeutics.
Insights
Hydrophobic prenyl groups are essential for H-Ras protein function. Hydrophilic farnesyl diphosphate analogues inhibit H-Ras, offering potential anticancer drug leads.
Area of Science:
- Biochemistry
- Molecular Biology
- Cell Biology
Background:
- H-Ras protein requires sequential processing by FTase, Rce1, and Icmt for membrane localization and MAPK cascade activation.
- The lipophilicity of the prenyl group is critical for H-Ras function.
Purpose of the Study:
- To investigate the role of prenyl group hydrophobicity in H-Ras function using Xenopus laevis oocytes.
- To identify novel H-Ras function inhibitors (RFIs) for potential anticancer therapeutics.
Main Methods:
- Utilized a Xenopus laevis oocyte whole-cell model system.
- Microinjected in vitro analogue-modified H-Ras into isoprenoid-depleted oocytes.
- Analyzed oocyte maturation kinetics and MAPK activation.
Main Results:
- Anilinogeranyl diphosphate analogues with hydrophobicity near farnesyl diphosphate (FPP) supported H-Ras function.
- Hydrophilic analogues (p-NO2-AGPP, p-CN-AGPP, Isox-GPP) with significantly lower hydrophobicity inhibited H-Ras function.
- Despite efficient postprenylation processing, these analogues prevented MAPK activation.
Conclusions:
- H-Ras biological function necessitates a minimum lipophilicity of the prenyl group for downstream interactions.
- Hydrophilic FPP analogues act as H-Ras function inhibitors (RFIs).
- These RFIs represent lead compounds for novel anticancer therapeutics targeting H-Ras.
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