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稳定突变可增加功能性可溶性 TCR-Ig 融合蛋白的分泌。

Stabilizing mutations increase secretion of functional soluble TCR-Ig fusion proteins.

机构信息

Department of Molecular Biosciences, Centre for Immune Regulation, University of Oslo, Oslo 0316, Norway.

出版信息

BMC Biotechnol. 2010 Aug 24;10:61. doi: 10.1186/1472-6750-10-61.

Abstract

BACKGROUND

Whereas T cell receptors (TCRs) detect peptide/major histocompatibility complexes (pMHCs) with exquisite specificity, there are challenges regarding their expression and use as soluble detection molecules due to molecular instability. We have investigated strategies for the production of TCR-immunoglobulin (Ig) fusion proteins. Two different TCRs that are characteristic of a mouse model for idiotype (Id) dependent immune regulation were engineered. They are structurally unrelated with different variable (V), diversity (D) and joining (J) segments, but each share one V gene segment, either Vα or Vβ, with the well characterized murine TCR, 2C.

RESULTS

Several TCR-Ig formats were assessed. In one, the TCR V domains were fused to Ig constant (C) regions. In others, the complete extracellular part of the TCR was fused either to a complete Ig or an Ig Fc region. All molecules were initially poorly secreted from eukaryotic cells, but replacement of unfavourable amino acids in the V regions improved secretion, as did the introduction of a disulfide bridge between the TCR C domains and the removal of an unpaired cysteine. A screening strategy for selection of mutations that stabilize the actual fusion molecules was developed and used successfully. Molecules that included the complete heterodimeric TCR, with a stabilizing disulfide bridge, were correctly folded as they bound TCR-specific antibodies (Abs) and detected pMHC on cells after specific peptide loading.

CONCLUSIONS

We show that fully functional TCR-Ig fusion proteins can be made in good yields following stabilizing engineering of TCR V and C region genes. This is important since TCR-Ig fusions will be important probes for the presence of specific pMHCs in vitro and in vivo. In the absence of further affinity maturation, the reagents will be very useful for the detection of kinetic stability of complexes of peptide and MHC.

摘要

背景

尽管 T 细胞受体 (TCR) 具有极高的特异性来检测肽/主要组织相容性复合物 (pMHC),但由于分子不稳定性,其表达和作为可溶性检测分子的应用仍存在挑战。我们研究了生产 TCR-免疫球蛋白 (Ig) 融合蛋白的策略。设计了两种与依赖独特型 (Id) 的免疫调节的小鼠模型相关的不同 TCR。它们在结构上不相关,具有不同的可变 (V)、多样性 (D) 和连接 (J) 片段,但每个都与经过充分表征的小鼠 TCR 2C 共享一个 V 基因片段,要么是 Vα 要么是 Vβ。

结果

评估了几种 TCR-Ig 格式。在一种格式中,TCR V 结构域与 Ig 恒定 (C) 区融合。在其他格式中,TCR 的整个细胞外部分要么与完整的 Ig 融合,要么与 Ig Fc 区融合。所有分子最初从真核细胞中分泌不良,但 V 区中不利氨基酸的替换改善了分泌,TCR C 区之间形成二硫键以及消除未配对的半胱氨酸也改善了分泌。开发了一种筛选策略来选择稳定实际融合分子的突变,并成功地使用了该策略。包括完整异二聚体 TCR 并具有稳定二硫键的分子正确折叠,因为它们与 TCR 特异性抗体 (Abs) 结合,并在特定肽负载后在细胞上检测到 pMHC。

结论

我们表明,通过对 TCR V 和 C 区基因进行稳定工程改造,可以以良好的产量生产出完全功能性的 TCR-Ig 融合蛋白。这很重要,因为 TCR-Ig 融合物将成为体外和体内检测特定 pMHC 的重要探针。在没有进一步亲和力成熟的情况下,这些试剂将非常有助于检测肽和 MHC 复合物的动力学稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d9b/2936418/c449cdea625b/1472-6750-10-61-1.jpg

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