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:A2AR-phospho-STAT1 (Y701)-HLA-E axis as a potential immune modulatory pathway in radiotherapy-resistant triple negative breast cancer.
A2AR-phospho-STAT1 (Y701)-HLA-E axis as a potential immune modulatory pathway in radiotherapy-resistant triple negative breast cancer.
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三阴性乳腺癌(TNBC)患者的生存率低于非TNBC患者,复发风险更高。此外,放疗抵抗性TNBC(RT-R-TNBC)表现出更强的化疗耐药性和侵袭性。
因此,迫切需要针对RT-R-TNBC和TNBC患者的创新治疗方法。我们此前的研究表明,由于人类白细胞抗原I类组织相容性抗原α链E(HLA-E)上调,NK细胞对RT-R-TNBC的细胞毒性降低。
因此,本研究旨在确定HLA-E上调的机制,并提出克服TNBC放疗抵抗的潜在治疗靶点。我们发现,HLA-E在TNBC肿瘤组织中的表达显著高于正常上皮组织和非TNBC组织,且与A2AR水平相关。
此外,MDA-MB-231(TNBC)和RT-R-MDA-MB-231(RT-R-TNBC)表现出A2AR依赖性的HLA-E过表达。NK细胞对MDA-MB-231和RT-R-MDA-MB-231的细胞毒性降低,而敲低A2AR或STAT1后可恢复。有趣的是,腺苷(ADO)诱导的STAT1磷酸化(Y701)与ADO诱导的HLA-E表达模式一致,而STAT1抑制剂氟达拉滨有效降低了磷酸化STAT1(Y701)水平,但未降低磷酸化STAT1(S727)水平。氟达拉滨还抑制了MDA-MB-231和RT-R-MDA-MB-231中ADO诱导的HLA-E表达,包括RT-R-MDA-MB-231中基础HLA-E表达。
此外,氟达拉滨减少了注射RT-R-MDA-MB-231小鼠的肿瘤进展、肺转移、HLA-E表达和磷酸化STAT1(Y701)。而且,NKG2A单克隆抗体monalizumab显著减少了肿瘤进展和肺转移,同时增加了细胞毒性NK细胞(CD25 + NK1.在注射RT-R-MDA-MB-231细胞的小鼠腹股沟淋巴结中,1+和CD69+NK1.1+细胞。
本研究表明,A2AR-phospho-STAT1 (Y701)-HLA-E轴可能作为克服TNBC中RT耐药的替代靶点。本研究表明,A2AR-STAT1 (Y701)-HLA-E轴可能作为克服TNBC中RT耐药的替代靶点。
Triple-negative breast cancer (TNBC) patients have lower survival rates and higher recurrence risks than non-TNBC patients.
Moreover, radiotherapy-resistant TNBC (RT-R-TNBC) exhibits enhanced chemotherapy resistance and invasiveness.
Therefore, there is a critical need for innovative treatments for RT-R-TNBC and TNBC patients.
Our previous study indicated that NK cells exhibit reduced cytotoxicity against RT-R-TNBCs due to human leukocyte antigen class I histocompatibility antigen, alpha chain E (HLA-E) upregulation.
Thus, this study aimed to identify the mechanism responsible for the upregulation of HLA-E and suggest potential therapeutic targets for overcoming the RT-resistance of TNBC.
We found that HLA-E expression was significantly higher in TNBC tumor tissues than in normal epithelial tissues and non-TNBC tissues, correlating with A2AR levels.
In addition, MDA-MB-231 (TNBC) and RT-R-MDA-MB-231 (RT-R-TNBC) showed an A2AR-dependent HLA-E overexpression. NK cell-mediated cytotoxicity against MDA-MB-231 and RT-R-MDA-MB-231 was reduced and restored by A2AR or STAT1 knockdown.
Interestingly, STAT1 phosphorylation (Y701) by adenosine (ADO) aligned with the HLA-E expression pattern by ADO, and fludarabine, a STAT1 inhibitor, effectively reduced phospho-STAT1 (Y701) levels but not phospho-STAT1 (S727) levels. Fludarabine also inhibited ADO-induced HLA-E expression in MDA-MB-231 and RT-R-MDA-MB-231, including basal HLA-E expression in RT-R-MDA-MB-231.
Additionally, fludarabine reduced tumor progression, lung metastasis, HLA-E expression, and phospho-STAT1 (Y701) in RT-R-MDA-MB-231-injected mice. Moreover, monalizumab, an NKG2A monoclonal antibody, significantly reduced tumor progression and lung metastasis with increased population of cytotoxic NK cells (CD25 + NK1. 1+ and CD69 + NK1.
1+) in the inguinal lymph nodes of RT-R-MDA-MB-231-injected mice. This study suggests that the A2AR-phospho-STAT1 (Y701)-HLA-E axis may serve as an alternative target for overcoming RT-resistance in TNBC. This study suggests that the A2AR-STAT1 (Y701)-HLA-E axis may serve as an alternative target for overcoming RT-resistance in TNBC.
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