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:Dissecting the Significance of Acid Phosphatase 1 Gene Alterations in Prostate Cancer.
Dissecting the Significance of Acid Phosphatase 1 Gene Alterations in Prostate Cancer.
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ACP1-High 肿瘤表现出独特的分子特征和冷 TME,突显了 ACP1 在 PC 发病机制和新型治疗靶向中的潜在作用。
酸性磷酸酶1(ACP1)基因编码低分子量蛋白酪氨酸磷酸酶,该酶在前列腺癌(PC)中过表达,是一个潜在的治疗靶点。我们分析了ACP1在原发/转移性PC中的表达及其与分子特征和临床结局的关联。
对5,028例标本进行了DNA二代测序(592基因/全外显子测序)/RNA测序(全转录组测序)。ACP1-高/ACP1-低表达定义为每百万转录本(TPM)的四分位数(Q4/Q1)。对ACP1四分位数分层样本的DNA突变谱进行了分析。基因集富集分析用于Hallmark通路集合。PD-L1+(≥2+,≥5%;SP142)通过免疫组织化学检测。肿瘤微环境(TME)的免疫细胞分数通过RNA去卷积/quanTIseq估算。总生存期(OS)从初次诊断/治疗开始至死亡/末次随访进行评估。
我们纳入了3,058例(60.8%)来自前列腺的样本,634例(12.6%)来自淋巴结转移(LNM),以及1,307例(26.0%)来自远处转移(DM)。ACP1表达在LNM/DM中高于前列腺(49.8/47.9 v 44.1 TPM;P < .0001)。在前列腺样本中,TP53突变在ACP1-Q4中富集(37.9%[Q4] v 27.0%[Q1];P < .001)。与细胞周期调控和氧化磷酸化相关的通路在ACP1-Q4中富集,而上皮-间质转化和通过核因子kappa-轻链增强子活化B细胞通路的肿瘤坏死因子-α信号在ACP1-Q1中富集。神经内分泌和雄激素受体信号在ACP1-Q4中增加。在ACP1-Q4中,M2巨噬细胞和NK 细胞比例增加,而T细胞和M1巨噬细胞减少。虽然ACP1-Q1/Q4之间的OS差异无统计学意义,但ACP1-Q4前列腺样本(Q4 v Q1:风险比[HR],1.19 [95% CI,0.99至1.42];P = .06)和DM(HR,1.12 [95% CI,0.93至1.36];P = .22)中OS较差的趋势存在,但LNM(HR,0.98 [95% CI,0.74至1.29];P = .87)中不存在。
The acid phosphatase 1 ( ACP1 ) gene encodes low-molecular-weight protein tyrosine phosphatase, which is overexpressed in prostate cancer (PC) and a potential therapeutic target. We analyzed ACP1 expression in primary/metastatic PC and its association with molecular profiles and clinical outcomes.
NextGen sequencing of DNA (592-gene/whole-exome sequencing)/RNA(whole-transcriptome sequencing) was performed for 5,028 specimens. ACP1 -High/ ACP1 -Low expression was defined as quartile (Q4/1) of RNA transcripts per million (TPM). DNA mutational profiles were analyzed for ACP1 -quartile-stratified samples. Gene set enrichment analysis was used for Hallmark collection of pathways. PD-L1+(≥2+, ≥5%; SP142) was tested by immunohistochemistry. Tumor microenvironment's (TME) immune cell fractions were estimated by RNA deconvolution/quanTIseq. Overall survival (OS) was assessed from initial diagnosis/treatment initiation to death/last follow-up.
We included 3,058 (60.8%) samples from the prostate, 634 (12.6%) from lymph node metastases (LNMs), and 1,307 (26.0%) from distant metastases (DMs). ACP1 expression was higher in LNM/DM than prostate (49.8/47.9 v 44.1 TPM; P < .0001). TP53 mutations were enriched in ACP1 -Q4 (37.9%[Q4] v 27.0%[Q1]; P < .001) among prostate samples. Pathways associated with cell cycle regulation and oxidative phosphorylation were enriched in ACP1 -Q4, whereas epithelial-mesenchymal transition and tumor necrosis factor-alpha signaling via nuclear factor kappa-light-chain-enhancer of activated B-cell pathways were enriched in ACP1 -Q1. Neuroendocrine and androgen receptor signaling was increased in ACP1 -Q4. M2 macrophages and natural killer cell fractions were increased, whereas T cells and M1 macrophages were decreased in ACP1 -Q4. While OS differences between ACP1 -Q1/Q4 were not statistically significant, there was a trend for worse OS among ACP1 -Q4 prostate samples (Q4 v Q1: hazard ratio [HR], 1.19 [95% CI, 0.99 to 1.42]; P = .06) and DM (HR, 1.12 [95% CI, 0.93 to 1.36]; P = .22) but not LNM (HR, 0.98 [95% CI, 0.74 to 1.29]; P = .87).
ACP1-High tumors exhibit a distinct molecular profile and cold TME, highlighting ACP1 's potential role in PC pathogenesis and novel therapeutic targeting.
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