Dense CRISPR Mapping of the WAVE Complex Identifies Pharmacological Modulators of AD-Linked Myeloid Migration
Sher, F.; Olah, M.; Ngo, J. C.; Xu, Y.
Show abstract
Although genetic risk for Alzheimer's disease (AD) strongly converges on microglial pathways, the druggable functional protein regions that control disease-relevant microglial behaviors remain largely unknown. Here, we applied dense CRISPR-Cas9 mutagenesis and CRISPRtile-based functional mapping to the WAVE regulatory complex (WRC), a central regulator of actin remodeling and cell migration. In a pooled CCL2-directed migration assay in human THP-1 myeloid cells, perturbation of NCKAP1L, CYFIP1, and BRK1 impaired migration and revealed divergent effects among WRC paralogs. Residue-level analysis mapped discrete migration-associated functional regions within CYFIP1 and NCKAP1L, including a CYFIP1 regulatory hotspot and a prioritized NCKAP1L region nominated for pharmacological targeting. Human single-nucleus datasets identified NCKAP1L as a microglia-enriched WRC component expressed across diverse microglial states. Machine-learning-guided compound prediction nominated Montelukast sodium and Piperacetazine, which we experimentally validated as negative and positive modulators of chemokine-directed migration, respectively. These findings establish WRC-dependent migration as a pharmacologically tunable myeloid process relevant to AD.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Selective targeting of TBXT with DARPins identifies regulatory networks and therapeutic vulnerabilities in chordoma 95%
- A single-cell multi-omic atlas spanning the adult rhesus macaque brain 94%
- Select EZH2 inhibitors enhance the viral mimicry effects of DNMT inhibition through a mechanism involving calcium-calcineurin-NFAT signaling 94%
Similar papers in this journal
- Neuronal identity is maintained in the adult brain through KAT3-dependent enhancer acetylation 94%
- The chemotherapeutic CX-5461 primarily targets TOP2B and exhibits selective activity in high-risk neuroblastoma. 94%
- ZMYND11 Functions in Bimodal Regulation of Latent Genes and Brain-like Splicing to Safeguard Corticogenesis 94%
Similar papers in this journal
- Drug-induced eRF1 degradation promotes readthrough and reveals a new branch of ribosome quality control 95%
- Accelerated drug resistant variant discovery with an enhanced, scalable mutagenic base editor platform 94%
- β1 integrin signaling governs necroptosis via the chromatin remodeling factor CHD4 94%
Similar papers in this journal
- Targeting the 3D genome by anthracyclines for chemotherapeutic effects 95%
- Brain-wide genetic mapping identifies the indusium griseum as a prenatal and shared target of pharmacologically-unrelated psychostimulants 94%
- S-Nitrosylation of CRTC1 in Alzheimer's disease impairs CREB-dependent gene expression induced by neuronal activity 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.