Department of Hematology and Oncological Sciences L. and A. Seràgnoli, S. Orsola Malpighi Hospital, University of Bologna, Bologna, Italy.
PLoS One. 2012;7(7):e40934. doi: 10.1371/journal.pone.0040934. Epub 2012 Jul 25.
Deletions of IKAROS (IKZF1) frequently occur in B-cell precursor acute lymphoblastic leukemia (B-ALL) but the mechanisms by which they influence pathogenesis are unclear. To address this issue, a cohort of 144 adult B-ALL patients (106 BCR-ABL1-positive and 38 B-ALL negative for known molecular rearrangements) was screened for IKZF1 deletions by single nucleotide polymorphism (SNP) arrays; a sub-cohort of these patients (44%) was then analyzed for gene expression profiling.
Total or partial deletions of IKZF1 were more frequent in BCR-ABL1-positive than in BCR-ABL1-negative B-ALL cases (75% vs 58%, respectively, p = 0.04). Comparison of the gene expression signatures of patients carrying IKZF1 deletion vs those without showed a unique signature featured by down-regulation of B-cell lineage and DNA repair genes and up-regulation of genes involved in cell cycle, JAK-STAT signalling and stem cell self-renewal. Through chromatin immunoprecipitation and luciferase reporter assays we corroborated these findings both in vivo and in vitro, showing that Ikaros deleted isoforms lacked the ability to directly regulate a large group of the genes in the signature, such as IGLL1, BLK, EBF1, MSH2, BUB3, ETV6, YES1, CDKN1A (p21), CDKN2C (p18) and MCL1.
Here we identified and validated for the first time molecular pathways specifically controlled by IKZF1, shedding light into IKZF1 role in B-ALL pathogenesis.
IKAROS(IKZF1)缺失经常发生在 B 细胞前体急性淋巴细胞白血病(B-ALL)中,但它们影响发病机制的机制尚不清楚。为了解决这个问题,对 144 例成人 B-ALL 患者(106 例 BCR-ABL1 阳性和 38 例 B-ALL 为已知分子重排阴性)进行了单核苷酸多态性(SNP)芯片检测 IKZF1 缺失;对这些患者的一个亚组(44%)进行了基因表达谱分析。
BCR-ABL1 阳性的 B-ALL 病例中 IKZF1 缺失的总缺失或部分缺失比 BCR-ABL1 阴性的 B-ALL 病例更常见(分别为 75%和 58%,p=0.04)。携带 IKZF1 缺失的患者与未携带的患者的基因表达特征比较显示,其特征是 B 细胞谱系和 DNA 修复基因下调,细胞周期、JAK-STAT 信号转导和干细胞自我更新相关基因上调。通过染色质免疫沉淀和荧光素酶报告基因检测,我们在体内和体外都证实了这些发现,表明 Ikaros 缺失的同种型缺乏直接调节签名中一大组基因的能力,例如 IGLL1、BLK、EBF1、MSH2、BUB3、ETV6、YES1、CDKN1A(p21)、CDKN2C(p18)和 MCL1。
在这里,我们首次鉴定并验证了由 IKZF1 特异性控制的分子途径,揭示了 IKZF1 在 B-ALL 发病机制中的作用。