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Published on: July 30, 2014
Generation of a specific activin antagonist by modification of the activin A propeptide
Yogeshwar Makanji1, Kelly L Walton, Karen L Chan
1Prince Henry's Institute of Medical Research, 246 Clayton Road, Clayton VIC 3168, Australia.
Abstract:
Elevated activin A levels in inhibin-deficient mice promote the development of gonadal tumors and induce cachexia by reducing muscle, liver, stomach, and fat mass. Because activin A is an important regulator of tissue growth, inhibiting the actions of this TGFβ family ligand may halt or reverse pathology in diseased tissues. In this study, we modified the activin A propeptide to generate a specific activin antagonist. Propeptides mediate the synthesis and secretion of all TGFβ ligands and, for some family members (e.g. TGFβ1), bind the mature growth factor with high enough affinity to confer latency. By linking the C-terminal region of the TGFβ1 propeptide to the N-terminal region of the activin A propeptide, we generated a chimeric molecule [activin/TGFβ1 propeptide (AT propeptide)] with increased affinity for activin A. The AT propeptide was 30-fold more potent than the activin A propeptide at suppressing activin-induced FSH release by LβT2 pituitary gonadotrope cells. Binding of the AT propeptide to activin A shields the type II receptor binding site, thereby reducing Smad2 phosphorylation and downstream signaling. In comparison with the commonly used activin antagonists, follistatin (IC(50) 0.42 nM), soluble activin type II receptor A-Fc (IC(50) 0.47 nM), and soluble activin type II receptor B-Fc (IC(50) 0.91 nM), the AT propeptide (IC(50) 2.6 nM) was slightly less potent. However, it was more specific, inhibiting activin A and activin B (IC(50) 10.26 nM) but not the closely related ligands, myostatin and growth differentiation factor-11. As such, the AT propeptide represents the first specific activin antagonist, and it should be an effective reagent for blocking activin actions in vivo.
Insights
Researchers developed a novel chimeric molecule, the activin/TGFβ1 propeptide (AT propeptide), to specifically block activin A. This new antagonist shows promise for treating diseases linked to elevated activin A levels.
Area of Science:
- Biochemistry
- Molecular Biology
- Endocrinology
Background:
- Elevated activin A levels contribute to gonadal tumors and cachexia in inhibin-deficient mice.
- Activin A, a TGFβ family ligand, regulates tissue growth, making its inhibition a potential therapeutic strategy.
Purpose of the Study:
- To engineer a specific antagonist for activin A by modifying its propeptide.
- To evaluate the potency and specificity of the novel chimeric molecule.
Main Methods:
- A chimeric molecule, the activin/TGFβ1 propeptide (AT propeptide), was created by linking TGFβ1 and activin A propeptide regions.
- The AT propeptide's ability to inhibit activin-induced FSH release in LβT2 cells was assessed.
- Binding affinity and specificity against related ligands were compared to existing antagonists.
Main Results:
- The AT propeptide demonstrated a 30-fold higher potency than the activin A propeptide in suppressing FSH release.
- It functions by binding activin A, blocking receptor interaction, and reducing downstream Smad2 phosphorylation.
- While slightly less potent than some existing antagonists, the AT propeptide exhibited superior specificity, inhibiting activin A and B but not myostatin or GDF-11.
Conclusions:
- The AT propeptide is the first identified specific antagonist of activin A.
- This novel molecule offers a promising tool for in vivo blockade of activin actions in relevant pathologies.
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