急性髓系白血病中高富集活白血病母细胞的蛋白质基因组学特征:SWOG报告。

EJHaem Pub Date : 2024-10-25 DOI:10.1002/jha2.1041
Jasmine Naru, Megan Othus, ChenWei Lin, Melinda A. Biernacki, Marie Bleakley, Thomas R. Chauncey, Harry P. Erba, Min Fang, Matthew P. Fitzgibbon, Phillip R. Gafken, Richard G. Ivey, Jacob J. Kennedy, Travis D. Lorentzen, Soheil Meshinchi, Anna Moseley, Era L. Pogosova-Agadjanyan, Vivian M. Liu, Jerald P. Radich, Uliana J. Voytovich, Pei Wang, Jeffrey R. Whiteaker, Cheryl L. Willman, Feinan Wu, Amanda G. Paulovich, Derek L. Stirewalt
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引用次数: 0

摘要

简介:急性髓性白血病(AML)仍然是最致命的造血恶性肿瘤之一。更好地了解控制AML的分子生物学可能导致改善风险分层并促进新疗法的发展。蛋白质是细胞生物学的主要组成部分。一些研究检查了来自AML标本的散装单核细胞(MNCs)的整体蛋白质组,这些细胞由处于不同分化阶段的异质细胞群组成。方法:考虑到非白血病细胞对蛋白质表达谱的潜在影响,我们应用了一种综合蛋白质基因组学方法,利用基于下一代测序和质谱的蛋白质组学,在未分类的跨国公司和从AML诊断时获得的血液和骨髓标本中分离的活白血病母细胞(VLBs)中鉴定新的蛋白质生物标志物。结果:我们发现VLBs和跨国公司之间的蛋白表达有显著差异。随后的研究(N = 27)集中于VLBs的蛋白质组学分析,确定了与突变基因型和临床结果相关的新的候选生物标志物,其中一些研究在一个独立的患者队列中进行了重述。使用质谱法,我们还检测了突变蛋白产物,其中一些通过计算机分析预测为可接受过继免疫治疗的潜在新抗原。如前所述,比较转录物和蛋白质表达的分析显示mRNA和蛋白质数据集之间总体适度相关,但富集与突变相关的基因显著提高了蛋白质- rna的相关性。结论:总之,这些结果提供了对VLBs生物学的深入了解,并证明了除了基因组和转录组外,还通过检查蛋白质组获得的收益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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

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

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.

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