CD81 通过阻断 CD274/PD-L1 的选择性自噬降解驱动放射抵抗性胶质母细胞瘤的免疫逃逸
CD81 drives immune evasion in radioresistant glioblastoma by blocking selective autophagic degradation of CD274/PD-L1.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Vaccination with Designed Neopeptides Induces Intratumoral, Cross-reactive CD4+ T-cell Responses in Glioblastoma.
Vaccination with Designed Neopeptides Induces Intratumoral, Cross-reactive CD4+ T-cell Responses in Glioblastoma.
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通过引入设计突变将肿瘤自身肽转化为外来抗原,是一种有前景的策略,可在胶质母细胞瘤等冷肿瘤中诱导强烈的瘤内 CD4+ T 细胞反应。
一些癌症的低突变负荷被认为是难以开发有效肿瘤疫苗的原因之一。为克服这一问题,我们开发了一种通过单氨基酸突变设计新肽以增强其免疫原性的策略。
外显子组和 RNA 测序以及对自体 HLA 分子的计算机 HLA 结合预测被用于识别候选新抗原肽。随后,利用计算机 HLA 锚定位点放置来推断肽的假定 T 细胞受体 (TCR) 接触位点。然后通过氨基酸替换使 TCR 接触残基的单个氨基酸发生突变。总体而言,合成了 175 条肽,并将每组 25 条、同时包含设计用于结合 HLA I 类和 II 类分子的肽的肽组应用于疫苗接种。在肿瘤复发发生后,对TIL(肿瘤浸润淋巴细胞)在总体和克隆水平上进行了详细表征。
外周血T细胞对疫苗肽(包括天然肽和设计的neopeptide)的免疫应答随着重复接种逐渐增强,但仍维持在较低水平。相比之下,在肿瘤复发时,CD8+ TIL和CD4+ TIL分别对45%和100%的疫苗肽产生应答。此外,TIL来源的CD4+ T细胞克隆不仅对设计的neopeptide表现出强应答和肿瘤细胞裂解,而且对肿瘤中未突变的天然肽也表现出强应答和肿瘤细胞裂解。
The low mutational load of some cancers is considered one reason for the difficulty to develop effective tumor vaccines. To overcome this problem, we developed a strategy to design neopeptides through single amino acid mutations to enhance their immunogenicity. EXPERIMENTAL DESIGN: Exome and RNA sequencing as well as in silico HLA-binding predictions to autologous HLA molecules were used to identify candidate neopeptides. Subsequently, in silico HLA-anchor placements were used to deduce putative T-cell receptor (TCR) contacts of peptides. Single amino acids of TCR contacting residues were then mutated by amino acid replacements. Overall, 175 peptides were synthesized and sets of 25 each containing both peptides designed to bind to HLA class I and II molecules applied in the vaccination. Upon development of a tumor recurrence, the tumor-infiltrating lymphocytes (TIL) were characterized in detail both at the bulk and clonal level.
The immune response of peripheral blood T cells to vaccine peptides, including natural peptides and designed neopeptides, gradually increased with repetitive vaccination, but remained low. In contrast, at the time of tumor recurrence, CD8+ TILs and CD4+ TILs responded to 45% and 100%, respectively, of the vaccine peptides. Furthermore, TIL-derived CD4+ T-cell clones showed strong responses and tumor cell lysis not only against the designed neopeptide but also against the unmutated natural peptides of the tumor.
Turning tumor self-peptides into foreign antigens by introduction of designed mutations is a promising strategy to induce strong intratumoral CD4+ T-cell responses in a cold tumor like glioblastoma.
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