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Proteogenomic characterization of highly enriched viable leukemic blasts in acute myeloid leukemia: A SWOG report.

Publication ,  Journal Article
Naru, J; Othus, M; Lin, C; Biernacki, MA; Bleakley, M; Chauncey, TR; Erba, HP; Fang, M; Fitzgibbon, MP; Gafken, PR; Ivey, RG; Kennedy, JJ ...
Published in: EJHaem
December 2024

INTRODUCTION: Acute myeloid leukemia (AML) remains one of the deadliest hematopoietic malignancies. A better understanding of the molecular biology governing AML may lead to improved risk stratification and facilitate the development of novel therapies. Proteins are responsible for much of the biology of cells. Several studies have examined the global proteome in bulk mononuclear cells (MNCs) from AML specimens, which are comprised a heterogenous population of cells at various stages of differentiation. METHODS: Given the potential impact of the nonleukemic cells on protein expression profiles, we applied an integrative proteogenomic approach utilizing next-generation sequencing and mass spectrometry-based proteomics to identify novel protein biomarkers in unsorted MNCs and viable leukemic blasts (VLBs) isolated from blood and bone marrow specimens obtained at the time of AML diagnosis. RESULTS: We identified significant differences in protein expression between VLBs and MNCs. Subsequent studies (N = 27) focused on proteomic profiling of VLBs that identified novel candidate biomarkers associated with mutational genotypes and clinical outcome, some of which were recapitulated in an independent cohort of patients. Using mass spectrometry, we also detected mutated protein products, some of which were predicted via in silico analyses to be potential neoantigens amenable to adoptive immunotherapy. As previously described, analyses comparing transcript and protein expression showed an overall modest correlation between mRNA and protein dataset, but enriching for genes associated with mutations significantly improved the protein-RNA correlation. CONCLUSION: Together, the results provide insight into the biology of VLBs and demonstrate the gains derived from examining the proteome in addition to genome and transcriptome.

Duke Scholars

Published In

EJHaem

DOI

EISSN

2688-6146

Publication Date

December 2024

Volume

5

Issue

6

Start / End Page

1243 / 1251

Location

United States

Related Subject Headings

  • 3201 Cardiovascular medicine and haematology
  • 3105 Genetics
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Naru, J., Othus, M., Lin, C., Biernacki, M. A., Bleakley, M., Chauncey, T. R., … Stirewalt, D. L. (2024). Proteogenomic characterization of highly enriched viable leukemic blasts in acute myeloid leukemia: A SWOG report. EJHaem, 5(6), 1243–1251. https://doi.org/10.1002/jha2.1041
Naru, Jasmine, Megan Othus, ChenWei Lin, Melinda A. Biernacki, Marie Bleakley, Thomas R. Chauncey, Harry P. Erba, et al. “Proteogenomic characterization of highly enriched viable leukemic blasts in acute myeloid leukemia: A SWOG report.EJHaem 5, no. 6 (December 2024): 1243–51. https://doi.org/10.1002/jha2.1041.
Naru J, Othus M, Lin C, Biernacki MA, Bleakley M, Chauncey TR, et al. Proteogenomic characterization of highly enriched viable leukemic blasts in acute myeloid leukemia: A SWOG report. EJHaem. 2024 Dec;5(6):1243–51.
Naru, Jasmine, et al. “Proteogenomic characterization of highly enriched viable leukemic blasts in acute myeloid leukemia: A SWOG report.EJHaem, vol. 5, no. 6, Dec. 2024, pp. 1243–51. Pubmed, doi:10.1002/jha2.1041.
Naru J, Othus M, Lin C, Biernacki MA, Bleakley M, Chauncey TR, Erba HP, Fang M, Fitzgibbon MP, Gafken PR, Ivey RG, Kennedy JJ, Lorentzen TD, Meshinchi S, Moseley A, Pogosova-Agadjanyan EL, Liu VM, Radich JP, Voytovich UJ, Wang P, Whiteaker JR, Willman CL, Wu F, Paulovich AG, Stirewalt DL. Proteogenomic characterization of highly enriched viable leukemic blasts in acute myeloid leukemia: A SWOG report. EJHaem. 2024 Dec;5(6):1243–1251.

Published In

EJHaem

DOI

EISSN

2688-6146

Publication Date

December 2024

Volume

5

Issue

6

Start / End Page

1243 / 1251

Location

United States

Related Subject Headings

  • 3201 Cardiovascular medicine and haematology
  • 3105 Genetics