Consequences of the Hsp110DE9 mutation in tumorigenesis and the 5-fluorouracil-based chemotherapy response in Msh2-deficient mice.

IF 0.2 3区 历史学 Q2 HISTORY War & Society Pub Date : 2022-06-01 DOI:10.1007/s00018-022-04293-3
Kathleen Noel, A 'dem Bokhari, Romane Bertrand, Florence Renaud, Pierre Bourgoin, Romain Cohen, Magali Svrcek, Anne-Christine Joly, Alex Duval, Ada Collura
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Abstract

Heat shock proteins (HSPs) play oncogenic roles in human tumours. We reported a somatic inactivating mutation of HSP110 (HSP110DE9) in mismatch repair-deficient (dMMR) cancers displaying microsatellite instability (MSI) but did not assess its impact. We evaluated the impact of the Hsp110DE9 mutation on tumour development and the chemotherapy response in a dMMR knock-in mouse model (Hsp110DE9KIMsh2KO mice). The effect of the Hsp110DE9 mutation on tumorigenesis and survival was evaluated in Msh2KO mice that were null (Hsp110wt), heterozygous (Hsp110DE9KI/+), or homozygous (Hsp110DE9KI/KI) for the Hsp110DE9 mutation by assessing tumoral syndrome (organomegaly index, tumour staging) and survival (Kaplan-Meier curves). 5-Fluorouracil (5-FU), which is the backbone of chemotherapy regimens in gastrointestinal cancers and is commonly used in other tumour types but is not effective against dMMR cells in vivo, was administered to Hsp110DE9KI/KI, Hsp110DE9KI/+, and Hsp110wtMsh2KO mice. Hsp110, Ki67 (proliferation marker) and activated caspase-3 (apoptosis marker) expression were assessed in normal and tumour tissue samples by western blotting, immunophenotyping and cell sorting. Hsp110wt expression was drastically reduced or totally lost in tumours from Msh2KOHsp110DE9KI/+ and Msh2KOHsp110DE9KI/KI mice. The Hsp110DE9 mutation did not affect overall survival or tumoral syndrome in Msh2KOHsp110DE9KI/+ and Msh2KOHsp110DE9KI/KI mice but drastically improved the 5-FU response in all cohorts (Msh2KOHsp110DE9KI/KI: P5fu = 0.001; Msh2KOHsp110DE9KI/+: P5fu = 0.005; Msh2KOHsp110wt: P5fu = 0.335). Histopathological examination and cell sorting analyses confirmed major hypersensitization to 5-FU-induced death of both Hsp110DE9KI/KI and Hsp110DE9KI/+ dMMR cancer cells. This study highlights how dMMR tumour cells adapt to HSP110 inactivation but become hypersensitive to 5-FU, suggesting Hsp110DE9 as a predictive factor of 5-FU efficacy.

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Hsp110DE9突变对Msh2缺陷小鼠肿瘤发生和基于5-氟尿嘧啶的化疗反应的影响。
热休克蛋白(HSPs)在人类肿瘤中起着致癌作用。我们曾报道在显示微卫星不稳定性(MSI)的错配修复缺陷(dMMR)癌症中出现了HSP110的体细胞失活突变(HSP110DE9),但并未评估其影响。我们评估了 Hsp110DE9 突变对肿瘤发生和 dMMR 基因敲入小鼠模型(Hsp110DE9KIMsh2KO 小鼠)化疗反应的影响。通过评估肿瘤综合征(器官肿大指数、肿瘤分期)和存活率(卡普兰-梅耶曲线),评估了Hsp110DE9突变对Msh2KO小鼠肿瘤发生和存活率的影响,这些Msh2KO小鼠分别为Hsp110wt无效、杂合子(Hsp110DE9KI/+)或Hsp110DE9突变同合子(Hsp110DE9KI/KI)。对 Hsp110DE9KI/KI、Hsp110DE9KI/+ 和 Hsp110wtMsh2KO 小鼠注射 5-氟尿嘧啶(5-FU),5-FU 是胃肠道癌症化疗方案的骨干,常用于其他类型的肿瘤,但在体内对 dMMR 细胞无效。通过 Western 印迹、免疫分型和细胞分拣技术评估了正常和肿瘤组织样本中 Hsp110、Ki67(增殖标记物)和活化的 caspase-3(凋亡标记物)的表达。在 Msh2KOHsp110DE9KI/+ 和 Msh2KOHsp110DE9KI/KI 小鼠的肿瘤中,Hsp110wt 表达急剧下降或完全丧失。Hsp110DE9 基因突变不会影响 Msh2KOHsp110DE9KI/+ 和 Msh2KOHsp110DE9KI/KI 小鼠的总生存期或肿瘤综合征,但会显著改善所有组群的 5-FU 反应(Msh2KOHsp110DE9KI/KI:P5fu = 0.001;Msh2KOHsp110DE9KI/+:P5fu = 0.005;Msh2KOHsp110DE9KI/KI:P5fu = 0.001):P5fu = 0.005; Msh2KOHsp110wt:P5fu = 0.335)。组织病理学检查和细胞分拣分析证实,Hsp110DE9KI/KI 和 Hsp110DE9KI/+ dMMR 癌细胞对 5-FU 诱导的死亡有明显的过敏反应。这项研究强调了 dMMR 肿瘤细胞如何适应 HSP110 失活但对 5-FU 超敏的过程,表明 Hsp110DE9 是 5-FU 疗效的预测因素。
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来源期刊
War & Society
War & Society Multiple-
CiteScore
0.50
自引率
25.00%
发文量
17
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