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:Targeting pancreatic cancer by TAK-981: a SUMOylation inhibitor that activates the immune system and blocks cancer cell cycle progression in a preclinical model.
Targeting pancreatic cancer by TAK-981: a SUMOylation inhibitor that activates the immune system and blocks cancer cell cycle progression in a preclinical model.
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我们的研究结果表明,药理学抑制 SUMO 通路代表了一种通过双重机制靶向 PDAC 的潜在策略:抑制癌细胞周期进展,并通过诱导干扰素信号激活抗肿瘤免疫。
胰腺导管腺癌(PDAC)具有高密度促结缔组织增生性间质、独特的免疫抑制微环境以及对所有形式的化疗和免疫治疗高度耐药的特征,导致5年生存率为9%。我们的研究旨在为PDAC的治疗增添新型小分子治疗药物。
我们研究了TAK-981,一种新型高选择性和强效的小分子抑制剂,针对小泛素样修饰蛋白(SUMO)激活酶E1,是否可用于治疗临床前同基因PDAC小鼠模型,并且我们研究了TAK-981的作用机制。
我们发现,与正常胰腺组织相比,SUMO化在PDAC患者样本中增加,SUMO化是一种细胞周期进程所需的可逆翻译后修饰。TAK-981在纳摩尔范围内降低PDAC细胞中的SUMO化,从而导致G2/M细胞周期阻滞、有丝分裂失败和染色体分离缺陷。TAK-981在KPC3同基因小鼠模型中有效限制了肿瘤负荷,且无全身毒性证据。体内TAK-981治疗增加了活化CD8 T细胞和自然杀伤(NK)细胞的比例,但短暂降低了肿瘤、外周血、脾脏和淋巴结中的B细胞数量。单细胞RNA测序显示,TAK-981治疗后在包括T、B和NK细胞的淋巴细胞中干扰素反应被激活。离体对CD8 T细胞进行TAK-981处理诱导了STAT1和干扰素靶基因的激活。
Pancreatic ductal adenocarcinoma (PDAC) has the characteristics of high-density desmoplastic stroma, a distinctive immunosuppressive microenvironment and is profoundly resistant to all forms of chemotherapy and immunotherapy, leading to a 5-year survival rate of 9%. Our study aims to add novel small molecule therapeutics for the treatment of PDAC. DESIGN: We have studied whether TAK-981, a novel highly selective and potent small molecule inhibitor of the small ubiquitin like modifier (SUMO) activating enzyme E1 could be used to treat a preclinical syngeneic PDAC mouse model and we have studied the mode of action of TAK-981.
We found that SUMOylation, a reversible post-translational modification required for cell cycle progression, is increased in PDAC patient samples compared with normal pancreatic tissue. TAK-981 decreased SUMOylation in PDAC cells at the nanomolar range, thereby causing a G2/M cell cycle arrest, mitotic failure and chromosomal segregation defects. TAK-981 efficiently limited tumour burden in the KPC3 syngeneic mouse model without evidence of systemic toxicity. In vivo treatment with TAK-981 enhanced the proportions of activated CD8 T cells and natural killer (NK) cells but transiently decreased B cell numbers in tumour, peripheral blood, spleen and lymph nodes. Single cell RNA sequencing revealed activation of the interferon response on TAK-981 treatment in lymphocytes including T, B and NK cells. TAK-981 treatment of CD8 T cells ex vivo induced activation of STAT1 and interferon target genes.
Our findings indicate that pharmacological inhibition of the SUMO pathway represents a potential strategy to target PDAC via a dual mechanism: inhibiting cancer cell cycle progression and activating anti-tumour immunity by inducing interferon signalling.
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