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Loss of tapasin in human lung and colon cancer cells and escape from tumor-associated antigen-specific CTL recognition

机译:人肺和结肠癌细胞中的绦虫丧失,逃离肿瘤相关抗原特异性CTL识别

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Cytotoxic T-lymphocytes (CTLs) lyse target cells after recognizing the complexes of peptides and MHC class I molecules (pMHC I) on cell surfaces. Tapasin is an essential component of the peptide-loading complex (PLC) and its absence influences the surface repertoire of MHC class I peptides. In the present study, we assessed tapasin expression in 85 primary tumor lesions of non-small cell lung cancer (NSCLC) patients, demonstrating that tapasin expression positively correlated with patient survival. CD8(+) T-cell infiltration of tumor lesions was synergistically observed with tapasin expression and correlated positively with survival. To establish a direct link between loss of tapasin and CTL recognition in human cancer models, we targeted the tapasin gene by CRISPR/Cas9 system and generated tapasin-deficient variants of human lung as well as colon cancer cells. We induced the CTLs recognizing endogenous tumor-associated antigens (TAA), survivin or cep55, and they responded to each tapasin-proficient wild type. In contrast, both CTL lines ignored the tapasin-deficient variants despite their antigen expression. Moreover, the adoptive transfer of the cep55-specific CTL line failed to prevent tumor growth in mice bearing the tapasindeficient variant. Loss of tapasin most likely limited antigen processing of TAAs and led to escape from TAA-specific CTL recognition. Tapasin expression is thus a key for CTL surveillance against human cancers.
机译:细胞毒性T淋巴细胞(CTLS)含有在鉴于细胞表面上的肽和MHC I类分子(PMHC I)的复合物后的靶细胞。 Tapasin是肽加载复合物(PLC)的基本组分,其缺失影响了MHC I类肽的表面曲目。在本研究中,我们评估了在非小细胞肺癌(NSCLC)患者的85个原发性肿瘤病变中的绦虫表达,证明了与患者存活率正相关的绦虫表达呈正相关。用绦虫表达协同观察肿瘤病变的CD8(+)T细胞浸润,并用存活率相关地相关。为了建立在人类癌症模型中的木薯和CTL识别的丧失之间的直接联系,我们通过CRISPR / CAS9系统瞄准了Tapasin基因,并产生了人肺的缺乏缺陷的人肺以及结肠癌细胞。我们诱导CTL识别内源性肿瘤相关抗原(TAA),Survivin或CeP55,并且它们对每种木麻素熟练的野生型作出反应。相比之下,尽管抗原表达,但CTL线忽略了缺乏缺陷的变体。此外,CEP55特异性CTL线的过度转移未能防止携带绦虫缺陷变体的小鼠中的肿瘤生长。 TAAS最有可能有限的抗原加工,并导致逃离TAA特定的CTL识别。因此,Tapasin表达是对人类癌症的CTL监测的关键。

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