RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:EVI1 exerts distinct roles in AML via ERG and cyclin D1 promoting a chemoresistant and immune-suppressive environment.
EVI1 exerts distinct roles in AML via ERG and cyclin D1 promoting a chemoresistant and immune-suppressive environment.
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EVI1+的异常表达与急性髓系白血病(AML)的极差预后相关,其机制目前仅部分明确。利用绿色荧光蛋白报告系统监测EVI1启动子活性,我们证明Evi1high KMT2A-MLLT1转化的AML细胞具有与Evi1low细胞不同的特征:独立于干细胞活性的侵袭性疾病潜能和对细胞毒性化疗的耐药性,以及一致的基因表达谱。在EVI1转化的AML细胞和正常造血细胞中进行RNA测序和染色质免疫沉淀测序,结合细胞增殖相关短发夹RNA的功能筛选,揭示红母细胞转化特异性转录因子ERG(E26转化特异性[ETS]相关基因)和cyclin D1是EVI1+ AML的下游靶点和治疗脆弱点。在小鼠EVI1+ AML模型中沉默Erg严重损害细胞增殖、化疗耐药性和致白血病能力。
Cyclin D1也是EVI1-AML有效发展的必要条件,与趋化因子产生和干扰素特征相关的基因表达谱以及T细胞和NK 细胞耗竭表型相关,依赖于干扰素γ(IFN-γ)/STAT1通路而不依赖于CDK4/CDK6。抑制IFN-γ/STAT1通路减轻免疫耗竭并损害EVI1-AML发展。在人类AML数据集中,EVI1和cyclin D1的过表达与IFN-γ特征和趋化因子表达增加相关,T细胞中耗竭分子表达也增加。这些数据共同表明,ERG和cyclin D1在EVI1+ AML的生物学中发挥关键作用,其中ERG导致疾病的侵袭性本质和化疗耐药,而cyclin D1则导致IFN-γ特征和耗竭T细胞表型,这些可能成为潜在的治疗靶点。
Aberrant expression of ecotropic viral integration site-1 (EVI1+) is associated with very poor outcomes in acute myeloid leukemia (AML), mechanisms of which are only partially understood. Using the green fluorescent protein reporter system to monitor EVI1 promoter activity, we demonstrated that Evi1high KMT2A-MLLT1-transformed AML cells possess distinct features from Evi1low cells: the potential for aggressive disease independent of stem cell activity and resistance to cytotoxic chemotherapy, along with the consistent gene expression profiles. RNA sequencing and chromatin immunoprecipitation sequencing in EVI1-transformed AML cells and normal hematopoietic cells combined with functional screening by cell proliferation-related short hairpin RNAs revealed that the erythroblast transformation-specific transcription factor ERG (E26 transformation-specific [ETS]-related gene) and cyclin D1 were downstream targets and therapeutic vulnerabilities of EVI1+ AML.
Silencing Erg in murine EVI1+ AML models severely impaired cell proliferation, chemoresistance, and leukemogenic capacity. Cyclin D1 is also requisite for efficient EVI1-AML development, associated with gene expression profiles related to chemokine production and interferon signature, and T- and natural killer-cell exhaustion phenotype, depending on the interferon gamma (IFN-γ)/STAT1 pathway but not on CDK4/CDK6. Inhibiting the IFN-γ/STAT1 pathway alleviated immune exhaustion and impaired EVI1-AML development.
Overexpression of EVI1 and cyclin D1 was associated with IFN-γ signature and increased expression of chemokines, with increased exhaustion molecules in T cells also in human AML data sets. These data collectively suggest that ERG and cyclin D1 play pivotal roles in the biology of EVI1+ AML, where ERG contributes to aggressive disease nature and chemoresistance, and cyclin D1 leads to IFN-γ signature and exhausted T-cell phenotypes, which could potentially be targeted.
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