McArdle Laboratory for Cancer Research.
Department of Biochemistry, and.
Blood. 2021 Jun 10;137(23):3259-3271. doi: 10.1182/blood.2020009082.
Early T-cell precursor acute lymphoblastic leukemia (ETP-ALL) is an aggressive subtype of T-cell ALL. Although genetic mutations hyperactivating cytokine receptor/Ras signaling are prevalent in ETP-ALL, it remains unknown how activated Ras signaling contributes to ETP-ALL. Here, we find that in addition to the frequent oncogenic RAS mutations, wild-type (WT) KRAS transcript level was significantly downregulated in human ETP-ALL cells. Similarly, loss of WT Kras in NrasQ61R/+ mice promoted hyperactivation of extracellular signal-regulated kinase (ERK) signaling, thymocyte hyperproliferation, and expansion of the ETP compartment. Kras-/-; NrasQ61R/+ mice developed early onset of T-cell malignancy that recapitulates many biological and molecular features of human ETP-ALL. Mechanistically, RNA-sequencing analysis and quantitative proteomics study identified that Rasgrp1, a Ras guanine nucleotide exchange factor, was greatly downregulated in mouse and human ETP-ALL. Unexpectedly, hyperactivated Nras/ERK signaling suppressed Rasgrp1 expression and reduced Rasgrp1 level led to increased ERK signaling, thereby establishing a positive feedback loop to augment Nras/ERK signaling and promote cell proliferation. Corroborating our cell line data, Rasgrp1 haploinsufficiency induced Rasgrp1 downregulation and increased phosphorylated ERK level and ETP expansion in NrasQ61R/+ mice. Our study identifies Rasgrp1 as a negative regulator of Ras/ERK signaling in oncogenic Nras-driven ETP-like leukemia.
早期 T 细胞前体细胞急性淋巴细胞白血病 (ETP-ALL) 是一种侵袭性 T 细胞 ALL 亚型。虽然细胞因子受体/Ras 信号的遗传突变在 ETP-ALL 中普遍存在,但 Ras 信号的激活如何促进 ETP-ALL 仍然未知。在这里,我们发现除了频繁的致癌 RAS 突变外,人类 ETP-ALL 细胞中 WT KRAS 转录本水平也显著下调。同样,NrasQ61R/+ 小鼠中 WT Kras 的缺失促进了细胞外信号调节激酶 (ERK) 信号的过度激活、胸腺细胞的过度增殖以及 ETP 区室的扩张。Kras-/-;NrasQ61R/+ 小鼠发生 T 细胞恶性肿瘤的早期发病,再现了人类 ETP-ALL 的许多生物学和分子特征。从机制上讲,RNA-seq 分析和定量蛋白质组学研究表明,Rasgrp1(一种 Ras 鸟苷酸交换因子)在小鼠和人类 ETP-ALL 中大大下调。出乎意料的是,过度激活的 Nras/ERK 信号抑制了 Rasgrp1 的表达,降低了 Rasgrp1 水平导致 ERK 信号增加,从而建立了一个正反馈环,增强 Nras/ERK 信号并促进细胞增殖。证实了我们的细胞系数据,Rasgrp1 杂合不足导致 Rasgrp1 下调和 NrasQ61R/+ 小鼠中磷酸化 ERK 水平和 ETP 扩张增加。我们的研究将 Rasgrp1 鉴定为致癌 Nras 驱动的 ETP 样白血病中 Ras/ERK 信号的负调节剂。