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Biology subjects

Blankman, J. L.

Publications and source records attributed to Blankman, J. L..

2 recordsLinked to original sources

Activity-based profiling of primary brain cells identifies covalent allosteric modulators of HCN channels

Chemical proteomics can provide global portraits of small molecule-protein interactions in native biological systems. Such ligandability maps have, however, been mostly restricted to readily accessible cell lines and primary immune cells. Here, we describe an activity-based protein profiling (ABPP) strategy for mapping the covalent ligandability of primary brain cells isolated from mice. By investigating sets of stereochemically defined electrophilic small molecules (stereoprobes), we identify liganding events for diverse brain cell proteins, including many with nervous system-enriched expression. In this category were multiple hyperpolarization-activated cyclic nucleotide-gated (HCN) ion channels, which we show are covalently liganded by tryptoline acrylamide stereoprobes at a conserved cysteine in their cyclic nucleotide-binding domain. The stereoprobes were found to block cAMP-dependent shifts in voltage dependence while sparing basal activity of HCN channels. We thus describe an advanced ABPP platform for identifying ligands targeting nervous system-enriched proteins, including chemical probes that modulate HCN channel function in cells.

biochemistry↗

Base exchange inhibitors of SARM1 form mononucleotide adducts and activate SARM1 in vivo

Activation of the NAD hydrolase SARM1 causes neuronal pathology. NAD binding to an allosteric site maintains SARM1 autoinhibition while NMN binding enables NADase activity. We evaluated SARM1 base exchange inhibitors (BEI) that exchange with nicotinamide in the SARM1 catalytic site to form inhibitor adducts. We found that BEI paradoxically activated SARM1 in some contexts, elevating both the SARM1 product cADPR and ratio to substrate, cADPR/NAD, in uninjured sciatic nerve and in healthy animals. Catalytically inactive E642A SARM1 knock-in mice were protected from elevated cADPR and cADPR/NAD in sciatic nerve after BEI dosing. Like the SARM1 activating forms of the neurotoxins Vacor and 3-acetylpyridine, BEI formed mononucleotide (MN) adducts in vivo. BEI also formed MN adducts in human THP-1 cells, as did the pyridine-containing drugs indinavir and chloroquine. These findings underscore the promiscuity of nicotinamide-related metabolism and potential for neurotoxicity arising from SARM1s susceptibility to activation by exogenous agents.

neuroscience↗