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:Anti-cancer immune effect of human colorectal cancer neoantigen peptide based on MHC class I molecular affinity screening.
Anti-cancer immune effect of human colorectal cancer neoantigen peptide based on MHC class I molecular affinity screening.
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1. 免疫原性最强的新抗原通常表现出 1 至 4 之间的 MHC 分子亲和力变异,提示免疫原性越强与 MHC 分子亲和力变异越大相关。
近期研究显示,肿瘤抗原肽疫苗具有显著疗效、安全性和可靠性。然而,具有免疫效力的抗原肽筛选流程繁琐,限制了其广泛应用。鉴定能够有效触发免疫应答的新抗原肽对于个体化癌症治疗至关重要。
对患者来源结肠癌细胞进行全外显子组测序,预测9个氨基酸(9aa)新抗原肽。体外模拟抗原呈递细胞(树突状细胞)向CD8+ T细胞呈递内源性抗原,以激活CD8+ T细胞对预测抗原的免疫应答。通过流式细胞术和ELISpot实验评估各新抗原的免疫学效应,并考察新抗原免疫原性与MHC分子亲和力之间的关系。
(1)采用二代测序(NGS)预测9aa新抗原肽,供后续免疫学分析。(2)实验组成熟树突状细胞(mDC;CD11c+CD83+)比例为96.6%,对照组为0.051%。实验组CD80荧光强度也显著较高,证实mDC数量更多。(3)新抗原肽促进CD4+、CD8+ T细胞和NK细胞增殖:14天后,流式细胞术显示实验组CD4+ T细胞、CD8+ T细胞和NK细胞比例分别为37.41%对7.8%、16.67%对14.63%和33.09%对7.81%,提示新抗原肽诱导了这些细胞增殖。(4)双因素方差分析显示,HLA分子亲和力变异在1至4范围内(B组)的标准化T值显著高于亲和力变异为1的A组(p<0.0001)和>4的C组(p<0.05)。HLA等位基因基因型方面,HLA-1型的标准化T值显著高于HLA-2型(p<0.05)和HLA-3型(p<0.0001);HLA-1型与最高T值相关。
(1)免疫原性最强的新抗原通常具有1至4的MHC分子亲和力变异,提示免疫原性较强与较高的MHC分子亲和力变异相关。(2)每位患者的HLA分子分为1、2和3型,其中1型结合新抗原的能力最强;研究结果显示,免疫原性最强的新抗原与HLA-1型相关。(3)新抗原肽可激活CD8+ T细胞增殖,并诱导CD4+ T细胞和NK细胞增殖。(4)MHC分子亲和力变异及HLA新抗原基因型有望成为筛选高免疫原性新抗原的重要变量,从而有助于更高效地制备有效的多肽肿瘤疫苗。
Tumor antigen peptide vaccines have shown remarkable efficacy, safety, and reliability in recent studies. However, the screening process for immunopotent antigenic peptides is cumbersome, limiting their widespread application. Identifying neoantigen peptides that can effectively trigger an immune response is crucial for personalized cancer treatment.
Whole exome sequencing was performed on patient-derived colon cancer cells to predict 9-amino-acid (9aa) neoantigen peptides. In vitro simulation of endogenous antigen presentation by antigen-presenting cells (dendritic cells) to CD8+ T cells was conducted, aiming to activate the CD8+ immune response to the predicted antigens. The immunological effects of each neoantigen were assessed using flow cytometry and ELISpot assays, while the relationship between neoantigen immunogenicity and MHC molecular affinity was examined.
1. Next-generation sequencing (NGS) predicted 9-amino acid (9aa) neoantigen peptides for subsequent immunological analysis.2. Higher mDC Levels in Experimental Group: CD11c+CD83+ mature dendritic cells (mDCs) were 96.6% in the experimental group, compared to 0.051% in the control group. CD80 fluorescence intensity was also significantly higher in the experimental group, confirming a greater mDC presence.3. Neoantigen Peptides Promote CD4+, CD8+ T, and NK Cell Proliferation: After 14 days, flow cytometry showed higher percentages of CD4+ T (37.41% vs 7.8%), CD8+ T (16.67% vs 14.63%), and NK cells (33.09% vs 7.81%) in the experimental group, indicating that the neoantigen peptides induced proliferation of CD4+, CD8+ T cells, and NK cells. 4. The results, analyzed using two-way ANOVA, showed that the standardized T-value for HLA molecular affinity variation in the 1-4 range (Group B) was significantly higher than for 1 (Group A, p < 0.0001) and >4 (Group C, p < 0.05). Regarding HLA-allele genotypes, HLA-Type 1 had a significantly higher standardized T-value than HLA-Type 2 ( p < 0.05) and HLA-Type 3 ( p < 0.0001). HLA-Type 1 was identified as the allele associated with the highest T-value.
1. The most immunogenic neoantigens typically exhibit an MHC molecular affinity variation between 1 and 4, indicating that stronger immunogenicity correlates with higher MHC molecular affinity variation. 2. Each patient's HLA molecules were classified into Types 1, 2, and 3, with Type 1 showing the highest binding capacity for neoantigens. Our findings indicate that the most immunogenic neoantigens were associated with HLA Type 1. 3. Neoantigen peptides were shown to activate the proliferation of both CD8+ T-cells and induce proliferation of CD4+ T-cells and NK cells. 4. Variation in MHC molecular affinity and HLA neoantigen genotype are anticipated to serve as valuable variables for screening highly immunogenic neoantigens, facilitating more efficient preparation of effective polypeptide tumor vaccines.
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