Meow
Built at Built with Claude: Life Sciences · Jul 7, 2026 · Remote

Immune checkpoint blockade (ICB) reactivates T cells to kill tumors and has transformed cancer treatment, but many patients don't respond. Most work on ICB response has focused on CD8⁺ killer T cells, but emerging evidence shows the CD4⁺ helper T cell is also important. Focusing on CD4⁺ helper T cells, I asked which gene-regulatory pathways push them into a non-responding state, and whether those pathways are druggable. I compared CD4 T cells from responders and non-responders in single-cell RNA-seq of 32 melanoma patients to define a non-responder signature, then integrated a genome-scale Perturb-seq atlas of ~2,600 gene knockdowns in healthy-donor CD4 T cells. Because each knockdown is a direct perturbation, the model learns which regulators causally push cells toward responding or non-responding, not merely what correlates. A model trained on the resting-condition perturbation data reproduced the patient signature well, and the top knockdowns cluster into coherent pathways. The interferon pathway was the highest-ranked controller of the response state, and its downstream genes are upregulated in non-responders — so inhibiting interferon should push cells toward responding. Critically, interferon-receptor antibodies and JAK inhibitors are already-approved interferon-pathway inhibitors, turning the analysis into a concrete, testable hypothesis to sensitize non-responders.