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PubMed · 42542437

Oncogene SETDB1's dual role: driving tumor progression and immune escape.

Abstract

Oncogene SETDB1, an H3K9 methyltransferase, drives tumorigenesis in various cancers. Using endometrial cancer (EC) as a model, we discovered SETDB1's dual mechanisms in driving EC tumorigenesis and mediating immune evasion. SETDB1 knockout (SETDB1-/-) tumor-bearing mice exhibited prolonged survival up to 100 days. Transcriptomic profiling of SETDB1-/- EC cells revealed decreased oncogene expression and increased tumor suppressor gene expression, which indicates that SETDB1 intrinsically promotes EC proliferation by regulating these downstream genes. SETDB1 repressed repeat elements and the interferon pathway, mediating immune evasion extrinsically by inhibiting anti-tumor macrophage infiltration. ChIP-seq analysis showed SETDB1 binding at pericentromeric regions on many chromosomes and numerous ZNFs. Loss of SETDB1 resulted in abnormal cell division. SETDB1-/- tumors displayed reduced proliferation markers (Ki67, pHH3) and increased macrophage infiltration. Mechanistically, SETDB1 promotes CD47 (a don't-eat-me signal) and represses CCL5 and CXCL9 (macrophage and T-cell recruiting chemokines), contributing to immune evasion. M1-like macrophages killed more SETDB1-/- cells in co-culture. Additionally, SETDB1 knockout in mouse EC cells reduced tumor growth in C57BL/6 mice, with increased macrophage and CD4 + T-cell infiltration. Our results indicate that elevated SETDB1 and its targets can predict higher tumor grade and worse survival, suggesting that targeting SETDB1 could be a promising therapeutic strategy for EC.

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BibTeXRIS

Kiarash Salari, Jiaqing Hao, Ryan Jilek, Matthew Wells, Tianyue Li, Eleanor Johnson, Wendy Meng, Huiyaxin Wang, Ethan Zibble, Adam Allen, Jack Gilbert, Ryan McLerran, Emma Schuett, Claudia Oliva, Corinne E Griguer, David K Meyerholz, Melinda S Yates, Henry L Keen, Xiangbing Meng, Yiqin Xiong, Bing Li, Shujie Yang. 2026-08-01. Oncogene SETDB1's dual role: driving tumor progression and immune escape.. https://doi.org/10.1038/s41388-026-03911-9

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