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:Case Report: Molecular and microenvironment change upon midostaurin treatment in mast cell leukemia at single-cell level.
Case Report: Molecular and microenvironment change upon midostaurin treatment in mast cell leukemia at single-cell level.
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肥大细胞白血病是一种罕见且侵袭性疾病,主要伴有KIT D816V突变。由于对常规多药化疗反应不佳,肥大细胞白血病对midostaurin治疗有反应,总缓解率(ORR)为50%,但完全缓解率约为0%。
因此,midostaurin耐药的潜在机制以及midostaurin在体内对基因表达谱和肥大细胞白血病微环境的确切影响,对于设计同时靶向肿瘤细胞和肿瘤微环境的个体化联合治疗至关重要。
在此,我们报告一例59岁男性肥大细胞白血病患者,伴有KIT F522C突变,接受midostaurin治疗。在midostaurin治疗前和治疗后10个月,分别进行了外周血单细胞测序和骨髓全外显子测序(WES)。与临床反应一致,与治疗前异常相比,观察到外周血中肥大细胞减少、T细胞、NK细胞、B细胞增加,以及骨髓中KIT F522C突变负荷降低。
同时,在midostaurin治疗后观察到RUNX1突变的出现、肿瘤细胞上基因表达上调(RPS27A、RPS6、UBA52、RACK1),以及表达TIGIT、CTLA4和LAG3的T细胞和NK细胞频率增加,预示该患者疾病进展。据我们所知,这是首例报告肥大细胞白血病患者在接受midostaurin治疗前后临床、免疫学和分子变化的病例,阐明了midostaurin在肥大细胞白血病中耐药的体内机制,为开发序贯方案以规避靶向癌基因成瘾后的肿瘤进展并延长患者生存提供了重要线索。
Mast cell leukemia is a rare and aggressive disease, predominantly with KIT D816V mutation. With poor response to conventional poly-chemotherapy, mast cell leukemia responded to the midostaurin treatment with a 50% overall response rate (ORR), but complete remission rate is approximately 0%.
Therefore, the potential mechanisms of midostaurin resistance and the exact impacts of midostaurin on both gene expression profile and mast cell leukemia microenvironment in vivo are essential for design tailored combination therapy targeting both the tumor cells and the tumor microenvironment.
Here we report a 59-year-old male mast cell leukemia patient with KIT F522C mutation treated with midostaurin. Single-cell sequencing of peripheral blood and whole exome sequencing (WES) of bone marrow were performed before and 10 months after midostaurin treatment. In accordance with the clinical response, compared to the pretreatment aberration, the decline of mast cells and increase of T-, NK, B-cells in peripheral blood, and the decrease of the KIT F522C mutation burden in bone marrow were observed.
Meanwhile, the emergence of RUNX1 mutation, upregulations of genes expression ( RPS27A , RPS6 , UBA52 , RACK1 ) on tumor cells, and increased frequencies of T and NK cells with TIGIT, CTLA4 , and LAG3 expression were observed after midostaurin treatment, predicting the disease progression of this patient.
As far as we know, this is the first case reporting the clinical, immunological, and molecular changes in mast cell leukemia patients before and after midostaurin treatment, illustrating the in vivo mechanisms of midostaurin resistance in mast cell leukemia, providing important clues to develop a sequential option to circumvent tumor progression after targeting oncogene addiction and prolong patients' survival.
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