PLoS ONE (Jan 2020)

A bicistronic vector backbone for rapid seamless cloning and chimerization of αβT-cell receptor sequences.

  • Korbinian N Kropp,
  • Tim J Schäufele,
  • Martina Fatho,
  • Michael Volkmar,
  • Roland Conradi,
  • Matthias Theobald,
  • Thomas Wölfel,
  • Catherine Wölfel

DOI
https://doi.org/10.1371/journal.pone.0238875
Journal volume & issue
Vol. 15, no. 9
p. e0238875

Abstract

Read online

To facilitate preclinical testing of T-cell receptors (TCRs) derived from tumor-reactive T-cell clones it is necessary to develop convenient and rapid cloning strategies for the generation of TCR expression constructs. Herein, we describe a pDONR™221 vector backbone allowing to generate Gateway™ compatible entry clones encoding optimized bicistronic αβTCR constructs. It harbors P2A-linked TCR constant regions and head-to-head-oriented recognition sites of the Type IIS restriction enzymes BsmBI and BsaI for seamless cloning of the TCRα and TCRβ V(D)J regions, respectively. Additional well-established TCR optimizations were incorporated to enhance TCR functionality. This included replacing of the human αβTCR constant regions with their codon-optimized murine counterparts for chimerization, addition of a second interchain disulfide bond and arrangement of the TCR chains in the order β-P2A-α. We exemplified the utility of our vector backbone by cloning and functional testing of three melanoma-reactive TCRs in primary human T cells.