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Stringent structural requirements for anti-Ras activity of S-prenyl analogues
Z Aharonson1, M Gana-Weisz, T Varsano
1Department of Neurobiochemistry, George S. Wise Faculty of Life Sciences, Tel-Aviv University, Israel.
Abstract:
The carboxy terminal S-farnesylcysteine of Ras oncoproteins is required for their membrane anchorage and transforming activities. We showed previously that S-farnesylthiosalicylic acid (FTS) affects the membrane anchorage of activated H-Ras in EJ cells and inhibits their growth. We report here on structural elements in S-prenyl derivatives that specifically inhibit the growth of EJ cells, but not of untransformed Rat-1 cells. Inhibition of the Ras-dependent extracellular signal-regulated protein kinase (ERK), of DNA synthesis and of EJ cell growth were apparent after treatment with FTS or its 5-fluoro, 5-chloro and 4-fluoro derivatives or with the C20 S-geranylgeranyl derivative of thiosalicylic acid. The 4-Cl-FTS analogue was a weak inhibitor of EJ cell growth. The 3-Cl-FTS analogue and the FTS carboxyl methyl ester were inactive, as were the C10 S-geranyl derivative of thiosalicylic acid, farnesoic acid, N-acetyl-S-farnesyl-L-cysteine and S-farne-sylthiopropionic acid. The structural requirements for anti-Ras activity of S-prenyl analogues thus appear to be rather stringent. With regard to chain length, the C15 farnesyl group linked to a rigid backbone seems to be necessary and sufficient. A free carboxyl group in an appropriately rigid orientation, as in thiosalicylic acid, is also required. Halogenic substitutents on the benzene ring of the thiosalicylic acid are tolerated only at position 5 or 4. This information may facilitate the design of potent Ras antagonists and deepen our understanding of the mode of association of Ras with the plasma membrane.
Insights
Structural modifications of S-prenyl derivatives are key to inhibiting Ras oncoprotein activity and cancer cell growth. Specific elements, including chain length and carboxyl group, are crucial for potent Ras antagonists.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Ras oncoproteins are crucial for cell growth and transformation.
- Their membrane anchorage, mediated by S-farnesylcysteine, is essential for function.
- S-farnesylthiosalicylic acid (FTS) previously showed effects on Ras anchorage and cell growth.
Purpose of the Study:
- To identify structural requirements of S-prenyl derivatives for specific inhibition of Ras-dependent cancer cell growth.
- To investigate structure-activity relationships for novel Ras antagonists.
Main Methods:
- Treatment of EJ (Ras-transformed) and Rat-1 (untransformed) cells with various S-prenyl derivatives.
- Assays for cell growth inhibition, extracellular signal-regulated protein kinase (ERK) activity, and DNA synthesis.
Main Results:
- FTS and its 5-fluoro, 5-chloro, and 4-fluoro derivatives, along with a C20 S-geranylgeranyl thiosalicylic acid derivative, inhibited EJ cell growth, ERK activity, and DNA synthesis.
- The 4-chloro-FTS analogue showed weak inhibition, while other analogues were inactive.
- A C15 farnesyl group on a rigid backbone and a free carboxyl group were necessary for activity.
Conclusions:
- The structural requirements for anti-Ras activity of S-prenyl analogues are stringent.
- A C15 farnesyl group and a free carboxyl group in a rigid orientation are essential.
- Halogen substituents are tolerated only at specific positions (4 or 5) on the thiosalicylic acid ring.
- Findings aid in designing potent Ras antagonists and understanding Ras membrane association.