首页> 美国卫生研究院文献>The Journal of Experimental Medicine >+1 Frameshifting as a Novel Mechanism to Generate a Cryptic Cytotoxic T Lymphocyte Epitope Derived from Human Interleukin 10
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+1 Frameshifting as a Novel Mechanism to Generate a Cryptic Cytotoxic T Lymphocyte Epitope Derived from Human Interleukin 10

机译:+1移码作为一种新的机制来产生源自人白细胞介素10的隐性细胞毒性T淋巴细胞表位

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摘要

Recent data indicate that some cytotoxic T cells (CTLs) recognize so-called cryptic epitopes, encoded by nonprimary open reading frame (ORF) sequences or other nonclassical expression pathways. We describe here a novel mechanism leading to generation of a cryptic CTL epitope. We isolated from the synovial fluid of a patient suffering from a Reiter's syndrome an autoreactive T cell clone that recognized cellular IL-10 in the HLA-B*2705 context. The minimal IL-10 sequence corresponding to nucleotides 379–408 was shown to activate this clone, upon cotransfection into COS cells with the DNA encoding HLA-B*2705, but the synthetic peptide deduced from this sequence did not stimulate the clone. Using a site-directed mutagenesis approach, we found that this clone recognized a transframe epitope generated by an internal +1 frameshifting in the IL-10 sequence and so derived partly from ORF1, partly from ORF2. We defined that +1 frameshifting was induced by a specific heptamer sequence. These observations illustrate the variety of mechanisms leading to generation of cryptic epitopes and suggest that frameshifting in normal cellular genes may be more common than expected.
机译:最近的数据表明,一些细胞毒性T细胞(CTL)可以识别由非主要开放阅读框(ORF)序列或其他非经典表达途径编码的所谓抗原决定簇。我们在这里描述了导致隐性CTL表位生成的新型机制。我们从患有Reiter综合征的患者的滑液中分离出一种自反应性T细胞克隆,该克隆可识别HLA-B * 2705环境中的细胞IL-10。与编码HLA-B * 2705的DNA共转染到COS细胞中后,与核苷酸379-408对应的最小IL-10序列被激活。使用定点诱变方法,我们发现该克隆可识别由IL-10序列内部+1移码产生的跨框架表位,因此部分衍生自ORF1,部分衍生自ORF2。我们定义+1移码是由特定的七聚体序列诱导的。这些观察结果说明了导致秘密表位产生的各种机制,并表明正常细胞基因的移码可能比预期的更为普遍。

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