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Potjewyd, F. M.

Publications and source records attributed to Potjewyd, F. M..

4 recordsLinked to original sources

Identification of a chemical probe for lipid kinase phosphatidylinositol-5-phosphate 4-kinase gamma (PI5P4Kγ)

Phosphatidylinositol-5-phosphate 4-kinase gamma (PI5P4K{gamma}), which phosphorylates phosphatidylinositol-5-monophosphate (PI(5)P), is a human lipid kinase with intriguing roles in inflammation, T cell activation, autophagy regulation, immunity, heart failure, and several cancers. To provide a high-quality chemical tool that would enable additional characterization of this protein, we designed and evaluated a potent, selective, and cell-active inhibitor of human PI5P4K{gamma}. We describe the use of the PI5P4K{gamma} NanoBRET assay to generate structure-activity relationships (SAR), support chemical probe (2) design, and identify a structurally related negative control (4). We have characterized the binding of our chemical probe to PI5P4K{gamma} using orthogonal assay formats reliant on competition with an ATP-competitive reagent. Based on our results in these assays, we hypothesize that 2 binds in the ATP active site of PI5P4K{gamma}. Kinome-wide profiling complemented by further off-target profiling confirmed the selectivity of both our chemical probe and negative control. When a breast cancer cell line (MCF-7) was treated with compound 2, increased mTORC1 signaling was observed, demonstrating that efficacious binding of 2 to PI5P4K{gamma} in cells results in activation of a negative feedback loop also reported in PI5P4K{gamma} knockout mice.

cell biology↗

Modulation of Tau Tubulin Kinases (TTBK1 and TTBK2) Impacts Ciliogenesis

Tau tubulin kinase 1 and 2 (TTBK1 and TTBK2) are highly homologous kinases that are expressed and mediate disease-relevant pathways predominantly in the brain. Distinct roles for TTBK1 and TTBK2 have been delineated. While efforts have been devoted to characterizing the impact to TTBK1 inhibition in diseases like Alzheimers disease and amyotrophic lateral sclerosis, TTBK2 inhibition has been less explored. TTBK2 serves a critical function during cilia assembly. Given the biological importance of these kinases, we designed a targeted library from which we identified several chemical tools that engage TTBK1 and TTBK2 in cells and inhibit their downstream signaling. Indolyl pyrimidinamine 10 significantly reduced the expression of primary cilia on the surface of human induced pluripotent stem cells (iPSCs). Furthermore, analog 10 phenocopies TTBK2 KO in iPSCs, confirming an essential role for TTBK2 in ciliogenesis.

cell biology↗

Protein proximity networks and functional evaluation of the Casein Kinase 1 γ family reveals unique roles for CK1γ3 in WNT signaling

The WNT/{beta}-catenin signaling pathway is evolutionarily conserved and controls normal embryonic development, adult tissue homeostasis and regeneration. Aberrant activation or suppression of WNT signaling contributes to cancer initiation and progression, developmental disorders, neurodegeneration, and bone disease. Despite great need and more than 40 years of research, targeted therapies for the WNT pathway have yet to be fully realized. Kinases are exceptionally druggable and occupy key nodes within the WNT signaling network, but several pathway-relevant kinases remain understudied and dark. Here we studied the function of the CSNK1{gamma} subfamily of human kinases. miniTurbo-based proximity biotinylation and mass spectrometry analysis of CSNK1{gamma}1, CSNK1{gamma}2, and CSNK1{gamma}3 revealed numerous established components of the {beta}-catenin- dependent and independent WNT signaling pathway, as well as novel interactors. In gain-of- function experiments leveraging a panel of transcriptional reporters, CSNK1{gamma}3 but not CSNK1{gamma}1 or CSNK1{gamma}2 activated {beta}-catenin-dependent WNT signaling and the Notch pathway. Within the family, CSNK1{gamma}3 expression uniquely induced LRP6 phosphorylation. Conversely, siRNA- mediated silencing of CSNK1{gamma}3 alone had no impact on WNT signaling, though co-silencing of all three family members decreased WNT pathway activity. We characterized two moderately selective and potent small molecule inhibitors of the CSNK1{gamma} family. These inhibitors and a CSNK1{gamma}3 kinase dead mutant suppressed but did not eliminate WNT-driven LRP6 phosphorylation and {beta}-catenin stabilization. Our data suggest that while CSNK1{gamma}3 expression uniquely drives pathway activity, potential functional redundancy within the family necessitates loss of all three family members to suppress the WNT signaling pathway.

cell biology↗

AD Informer Set: Chemical tools to facilitate Alzheimer's disease drug discovery

IntroductionThe portfolio of novel targets to treat Alzheimers disease (AD) has been enriched by the AMP-AD program. MethodsA cheminformatics-driven effort enabled identification of existing small molecule modulators for many protein targets nominated by AMP-AD and suitable positive control compounds to be included in the set. ResultsWe have built an annotated set of 171 small molecule modulators, including mostly inhibitors, targeting 98 unique proteins that have been nominated by AMP-AD consortium members as novel targets for AD treatment. These small molecules vary in their quality and should be considered chemical tools that can be used in efforts to validate therapeutic hypotheses, but which would require further optimization. A physical copy of the AD Informer Set can be ordered via the AD Knowledge Portal. DiscussionSmall molecule tools that enable target validation are important tools for the translation of novel hypotheses into viable therapeutic strategies for AD.

neuroscience↗