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TCR-engineered T cells: A model of inducible TCR expression to dissect the interrelationship between two TCRs

机译:TCR工程改造的T细胞:可诱导的TCR表达模型用于剖析两个TCR之间的相互关系

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摘要

TCR gene modified T cells for adoptive therapy simultaneously express the Tg TCR and the endogenous TCR, which might lead to mispaired TCRs with harmful unknown specificity and to a reduced function of TCR-Tg T cells. We generated dual TCR T cells in two settings in which either TCR was constitutively expressed by a retroviral promoter while the second TCR expression was regulable by a Tet-on system. Constitutively expressed TCR molecules were reduced on the cell surface depending on the induced TCR expression leading to strongly hampered function. Besides that, using fluorescence resonance energy transfer we detected mispaired TCR dimers and different pairing behaviors of individual TCR chains with a mutual influence on TCR chain expression. The loss of function and mispairing could not be avoided by changing the TCR expression level or by introduction of an additional cysteine bridge. However, in polyclonal T cells, optimized TCR formats (cysteineization, codon optimization) enhanced correct pairing and function. We conclude from our data that (i) the level of mispairing depends on the individual TCRs and is not reduced by increasing the level of one TCR, and (ii) modifications (cysteineization, codon optimization) improve correct pairing but do not completely exclude mispairing (cysteineization).
机译:用于过继治疗的TCR基因修饰的T细胞同时表达Tg TCR和内源性TCR,这可能导致具有有害未知特异性的TCR配对错误,并降低TCR-Tg T细胞的功能。我们在两种情况下生成了双TCR T细胞,其中两种TCR由逆转录病毒启动子组成性表达,而第二种TCR表达由Tet-on系统调节。组成型表达的TCR分子在细胞表面上减少,这取决于诱导的TCR表达,从而导致功能严重受阻。除此之外,使用荧光共振能量转移,我们检测到配对错误的TCR二聚体和单个TCR链的不同配对行为,并且对TCR链的表达产生相互影响。通过改变TCR表达水平或引入额外的半胱氨酸桥不能避免功能丧失和配对错误。但是,在多克隆T细胞中,优化的TCR格式(半胱氨酸化,密码子优化)增强了正确的配对和功能。我们从数据得出的结论是:(i)配对错误的水平取决于各个TCR,并且不会因增加一个TCR的水平而降低,并且(ii)修饰(半胱氨酸化,密码子优化)可以改善正确的配对,但不能完全排除配对错误(半胱氨酸化)。

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