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Updated: Feb 22, 2026

Chemical Inactivation of the E3 Ubiquitin Ligase Cereblon by Pomalidomide-based Homo-PROTACs
Published on: May 15, 2019
The C1 domain of Vav3, a novel potential therapeutic target
Jessica S Kelsey1, Tamás Géczy1, Christopher J Kaler1
1Laboratory of Cancer Biology and Genetics, Center for Cancer Research, National Cancer Institute, NIH, Bethesda, MD 20892, USA.
Abstract:
Vav1/2/3 comprise a protein family with guanyl nucleotide exchange activity for Rho and Rac as well as with motifs conferring adapter activity. Biologically, Vav1 plays a critical role in hematologic cell signaling, whereas Vav2/3 have a wider tissue distribution, but all 3 Vav proteins are implicated in cancer development. A structural feature of Vav1/2/3 is the presence of an atypical C1 domain, which possesses close structural homology to the typical C1 domains of protein kinase C but which fails to bind the second messenger diacylglycerol or the potent analogs, the phorbol esters. Previously, we have shown that five residues in the Vav1 C1 domain are responsible for its lack of phorbol ester binding. Here, we show that the lack of phorbol ester binding of Vav3 has a similar basis. We then explore the consequences of phorbol ester binding to a modified Vav3 in which the C1 domain has been altered to allow phorbol ester binding. We find both disruption of the guanyl nucleotide exchange activity of the modified Vav 3 as well as a shift in localization to the membrane upon phorbol ester treatment. This change in localization is associated with altered interactions with other signaling proteins. The studies provide a first step in assessing the potential for the design of custom C1 domain targeted molecules selective for the atypical C1 domains of Vav family proteins.
Insights
The atypical C1 domain in Vav3 prevents phorbol ester binding, crucial for its signaling. Modifying this domain allows binding, disrupting Vav3
Area of Science:
- Molecular Biology
- Cell Signaling
- Cancer Research
Background:
- Vav1/2/3 proteins are key regulators of Rho and Rac GTPases.
- Atypical C1 domains in Vav proteins do not bind diacylglycerol or phorbol esters.
- Vav proteins are implicated in cancer development.
Purpose of the Study:
- To investigate the structural basis for Vav3's lack of phorbol ester binding.
- To explore the functional consequences of enabling phorbol ester binding to Vav3.
- To assess the potential for targeted C1 domain modulation of Vav proteins.
Main Methods:
- Site-directed mutagenesis of the Vav3 C1 domain.
- Analysis of guanyl nucleotide exchange activity.
- Cellular localization studies and protein interaction assays.
Main Results:
- Five residues in the Vav3 C1 domain were identified as responsible for lack of phorbol ester binding.
- Modified Vav3 with a phorbol ester-binding C1 domain showed disrupted guanyl nucleotide exchange activity.
- Phorbol ester treatment induced membrane translocation of modified Vav3, altering protein interactions.
Conclusions:
- The atypical C1 domain's structure dictates phorbol ester binding in Vav3.
- Modulating Vav C1 domain binding affects its signaling and localization.
- This research offers a foundation for designing selective C1 domain inhibitors for Vav family proteins.
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