Cancer and Blood Disorders Center, Dana-Farber Cancer Institute and Boston Children's Hospital, Harvard Medical School, Boston, Massachusetts.
Ken Eagle Consulting, Houston, Texas.
Blood Cancer Discov. 2022 Sep 6;3(5):394-409. doi: 10.1158/2643-3230.BCD-21-0207.
Relapse of acute myeloid leukemia (AML) after allogeneic bone marrow transplantation has been linked to immune evasion due to reduced expression of major histocompatibility complex class II (MHCII) genes through unknown mechanisms. In this work, we developed CORENODE, a computational algorithm for genome-wide transcription network decomposition that identified a transcription factor (TF) tetrad consisting of IRF8, MYB, MEF2C, and MEIS1, regulating MHCII expression in AML cells. We show that reduced MHCII expression at relapse is transcriptionally driven by combinatorial changes in the expression of these TFs, where MYB and IRF8 play major opposing roles, acting independently of the IFNγ/CIITA pathway. Beyond the MHCII genes, MYB and IRF8 antagonistically regulate a broad genetic program responsible for cytokine signaling and T-cell stimulation that displays reduced expression at relapse. A small number of cells with altered TF abundance and silenced MHCII expression are present at the time of initial leukemia diagnosis, likely contributing to eventual relapse.
Our findings point to an adaptive transcriptional mechanism of AML evolution after allogeneic transplantation whereby combinatorial fluctuations of TF expression under immune pressure result in the selection of cells with a silenced T-cell stimulation program. This article is highlighted in the In This Issue feature, p. 369.
同种异体骨髓移植后急性髓系白血病(AML)的复发与主要组织相容性复合体 II 类(MHCII)基因表达减少有关,这是由于未知机制导致免疫逃逸。在这项工作中,我们开发了 CORENODE,这是一种用于全基因组转录网络分解的计算算法,该算法确定了一个由 IRF8、MYB、MEF2C 和 MEIS1 组成的转录因子(TF)四联体,调节 AML 细胞中的 MHCII 表达。我们表明,复发时 MHCII 表达的降低是由这些 TF 表达的组合变化转录驱动的,其中 MYB 和 IRF8 发挥主要的相反作用,独立于 IFNγ/CIITA 途径。除了 MHCII 基因外,MYB 和 IRF8 还拮抗调节一个广泛的遗传程序,该程序负责细胞因子信号和 T 细胞刺激,在复发时表达降低。在初始白血病诊断时,存在少数 TF 丰度改变和 MHCII 表达沉默的细胞,可能导致最终复发。
我们的发现指出了同种异体移植后 AML 进化的一种适应性转录机制,即 TF 表达在免疫压力下的组合波动导致选择具有沉默 T 细胞刺激程序的细胞。本文在本期特色文章中得到了强调,第 369 页。