bioRxiv · 10.1101/2024.11.29.625909
Leukemia-mutated proteins PHF6 and PHIP form a chromatin complex that represses myeloid leukemia stemness
Abstract
Myeloid leukemias are heterogeneous cancers with diverse mutations, sometimes in genes with unclear roles and unknown functional partners. PHF6 and PHIP are two poorly-understood chromatin-binding proteins recurrently mutated in acute myeloid leukemia (AML). PHF6 mutations are associated with poorer outcomes, while PHIP was recently identified as the most common selective mutation in Black patients in AML. Here, we show that PHF6 is a transcriptional repressor that suppresses a stemness gene network, and that PHF6 missense mutations, classified by current clinical algorithms as variants of unknown significance, produce unstable or non-functional protein. We present multiple lines of evidence converging on a critical mechanistic connection between PHF6 and PHIP. We show that PHIP loss phenocopies PHF6 loss, and that PHF6 requires PHIP to occupy chromatin and exert its downstream transcriptional program. Our work unifies PHF6 and PHIP, two disparate leukemia-mutated proteins, into a common functional complex that suppresses AML stemness.
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Pawar, A. S., Somers, P., Alex, A., George, S. S., Antony, C., Verner, R., White-Brown, S. K., Khera, M., Mendoza-Figueroa, M. S., Liu, K. F., Morrissette, J., Paralkar, V. R.. 2024-12-03. Leukemia-mutated proteins PHF6 and PHIP form a chromatin complex that represses myeloid leukemia stemness. https://doi.org/10.1101/2024.11.29.625909
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