PO.MCB07.03 · 分子与细胞生物学
来自西班牙裔/拉丁裔患者的儿童B-ALL(伴或不伴高危遗传性结构变异)的转录失调
Transcriptional dysregulation of pediatric B-ALL derived from Hispanic/Latino patients with and without high-risk genetic structural variants
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
儿童急性淋巴细胞白血病(ALL)是儿童和青少年中最常见的癌症诊断。复发性ALL因高度普遍而仍是导致儿童和青少年ALL患者癌症死亡的主要原因之一。西班牙裔/拉丁裔(H/L)患者是一个脆弱人群,因为即使校正了社会经济风险因素,其诊断发病率和死亡率仍高于非西班牙裔白人(NHW)。H/L儿童具有更高的高危遗传性结构变异发生率,如BCR-ABL1易位。IKZF1缺失更为频繁地出现,并常伴随其他高危易位或缺失,如CRLF2。CRLF2易位连同JAK2改变可导致高危Ph样B-ALL。我们利用来源于RNA测序的转录组学,分析了来自42名H/L儿童和18名NHW儿童的白血病样本,以揭示儿童H/L ALL失调的调控通路。我们根据野生型IKZF1状态或IKZF1缺失状态对这两个患者组进行了比较。使用排序基因集富集分析,我们发现在伴IKZF1缺失的H/L B-ALL中,影响复制、修复和组蛋白修饰的多条基因组维持通路的失调通路表现增强。在比较野生型IKZF1的H/L与NHW样本时,基因集富集分析显示DNA修复、细胞周期调控以及氨基酸代谢通路的失调表达增加。对等量H/L和NHW B-ALL样本(n = 16)进行的简化代表性亚硫酸氢盐测序分析显示,与NHW相比,H/L患者在代表细胞骨架结构、囊泡运输、癌细胞信号传导、氨基酸反应通路以及与癌症相关的长非编码RNA的基因上具有改变的甲基化特征。数据表明,来源于H/L患者的B-ALL在转录组学和转录组调控方面与NHW存在一些根本性差异。即使在没有高危遗传性结构变异的情况下也观察到了这一点。H/L B-ALL的结果提示,进一步研究这种转录失调的机制将带来针对这一脆弱人群的风险适应性治疗的新方法。
查看英文原文 English abstract
Childhood Acute Lymphoblastic Leukemia (ALL) is the most common cancer diagnosis in children and teens. Relapsed ALL still contributes to leading cancer mortality in children and teens with ALL given it is highly prevalent. Hispanic/Latino (H/L) patients are a vulnerable population due to higher incidence of diagnosis and mortality compared to NHW despite correction for socioeconomic risk factors. H/L children have a higher incidence of high-risk genetic structural variants such as BCR-ABL1 translocations. IKZF1-del occurs more frequently and is frequently accompanied by other high-risk translocations or deletions such as CRLF2. CRLF2 translocations along with JAK2 alterations result in high-risk Ph-like B-ALL. We analyzed H/L leukemia samples from 42 H/L children and 18 NHW children using transcriptomics derived from RNAseq to uncover dysregulated regulatory pathways for childhood H/L ALL. We compared these two patient groups based on wildtype IKZF1 status or IKZF1 deleted status. Using ranked gene set enrichment analysis we found increased representation of dysregulated pathways for multiple genome maintenance pathways that affect replication, repair, and histone modification in H/L B-ALL with IKZF1 deletion. When comparing samples from H/L and NHW with wildtype IKZF1, gene set enrichment analysis showed downregulated showed increased dysregulated expression of DNA repair, cell cycle regulation, as well as amino acid metabolism pathways. Reduced representation bisulfide sequencing analysis of equal H/L and NWH B ALL samples (n = 16) showed altered methylation signatures for H/L patients in comparison to NHW for genes represented in cytoskeletal structure, vesicle trafficking, cancer cell signaling, amino acid response pathways, and long noncoding RNAs associated with cancer. The data show that there are some fundamental differences in the transcriptomics and transcriptomic regulation of B-ALL derived H/L patients compared to that of NWH. This was observed even in the absence of high-risk genetic structural variants. The H/L B-ALL results suggest that further research into the mechanisms of this transcriptional dysregulation will result in new approaches for risk adapted therapy to address this vulnerable population.
利益披露 Disclosure
J. Schramm, None..
B. Pownraj, None..
B. He, None..
Y. Ding, None..
D. Bogush, None..
S. Chingakham, None..
K. Dovat, None..
D. Bastihalli Tukaramrao, None..
S. Dovat, None.