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The splicing factor RBM17 drives leukemic stem cell maintenance by evading nonsense-mediated decay of pro-leukemic factors.

Nature communications · 2022 · Vol. 13 (1) · pp. 3833

Abstract

Chemo-resistance in acute myeloid leukemia (AML) patients is driven by leukemic stem cells (LSCs) resulting in high rates of relapse and low overall survival. Here, we demonstrate that upregulation of the splicing factor, RBM17 preferentially marks and sustains LSCs and directly correlates with shorten patient survival. RBM17 knockdown in primary AML cells leads to myeloid differentiation and impaired colony formation and in vivo engraftment. Integrative multi-omics analyses show that RBM17 repression leads to inclusion of poison exons and production of nonsense-mediated decay (NMD)-sensitive transcripts for pro-leukemic factors and the translation initiation factor, EIF4A2. We show that EIF4A2 is enriched in LSCs and its inhibition impairs primary AML progenitor activity. Proteomic analysis of EIF4A2-depleted AML cells shows recapitulation of the RBM17 knockdown biological effects, including pronounced suppression of proteins involved in ribosome biogenesis. Overall, these results provide a rationale to target RBM17 and/or its downstream NMD-sensitive splicing substrates for AML treatment.

Publication Types

["Journal Article", "Research Support, N.I.H., Extramural", "Research Support, Non-U.S. Gov't"]

Keywords

[]

MeSH Terms

["Hematopoiesis", "Humans", "Leukemia, Myeloid, Acute", "Neoplastic Stem Cells", "Proteomics", "RNA Splicing Factors"]

Funding

R01 HL137223 NHLBI NIH HHS (United States)

Linked Datasets (1)

GSE180955 GSE via ncbi_elink
GEO

RBM17 Mediates Evasion of Pro-Leukemic Factors from Splicing-coupled NMD to Enforce Leukemic Stem Cell Maintenance

Homo sapiens
6 data files
FileTypeSize
K562-RBM17-eCLIP1_R1.fastq.gz RIP-Seq 1.4 GB
K562-RBM17-eCLIP1_R1.fastq.gz RIP-Seq 1.4 GB
K562-RBM17-eCLIP2_R1.fastq.gz RIP-Seq 1.2 GB
K562-RBM17-eCLIP2_R1.fastq.gz RIP-Seq 1.2 GB
K562-RBM17-Input_R1.fastq.gz RIP-Seq 1.6 GB
K562-RBM17-Input_R1.fastq.gz RIP-Seq 1.6 GB

Potentially Related Datasets (10)

These accessions were text-mined from the PMC full text. They may be referenced for comparison, cited from other studies, or otherwise mentioned without being primary data for this paper.

GSE42519 GSE GEO
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The Hematopoietic System - Myeloid arm

GSE88047 GSE GEO
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shRNA RNA-seq from K562 (ENCSR118EFE)

GSE76008 GSE GEO
GEO

A 17-Gene Stemness Score for Rapid Identification of High-Risk AML Patients [Illumina]

GSE67040 GSE GEO
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Leucegene: AML sequencing

GSE13204 GSE GEO
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Microarray Innovations in LEukemia (MILE) study

GSE35008 GSE GEO
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Expression data from human hematopoietic stem and progenitor compartments from patients with acute myeloid leukemia with normal karyotype and healthy …

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shRNA RNA-seq from K562 (ENCSR898OPN)

PXD008307 PXD PRIDE
PXD026780 PXD PRIDE

RBM17 Mediates Evasion of Pro-Leukemic Factors from Splicing-coupled NMD to Enforce Leukemic Stem Cell Maintenance

Analysis Pipelines (8)

Microarray geo_data_processing GSE13204
eCLIP geo_data_processing GSE180955
Microarray geo_data_processing GSE35008
Microarray geo_data_processing GSE42519
geo_data_processing GSE67040
Microarray geo_data_processing GSE76008
RNA-seq geo_data_processing GSE88047
RNA-seq geo_data_processing GSE88633