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Biology subjects

Lau, C.-I.

Publications and source records attributed to Lau, C.-I..

2 recordsLinked to original sources

A post-transcriptional regulatory checkpoint controls the response of tumor-infiltrating cytotoxic CD4+ T cells to immunotherapy

Acquisition of cytotoxic activity in CD4+ T cells (TCTX) can promote potent anti-tumor activity thus holding promise as a therapeutic approach. However, how this activity is regulated remains poorly understood. Here, we demonstrate that tumor-infiltrating CD4+ TCTX activity is restrained by a post-transcriptional regulatory checkpoint. In untreated tumors, CD4+ TCTX exist in a poised state, characterized by abundant Gzmb mRNA but limited Granzyme B (GzmB) protein. Differentiation into poised TCTX is regulated by the Blimp-1-Bcl6 axis and requires type-I interferon signaling. Treatment with anti-CTLA-4 or anti-LAG-3 plus anti-PD-1 removed the block to GzmB protein production by repressing expression of the post-transcriptional regulator Zfp36l1. Constitutive Zfp36l1 expression abrogated the effects of anti-CTLA-4 while deletion of Zfp36l1 and its paralog Zfp36 triggered GzmB protein production and promoted tumor control. These data identify ZFP36/ZFP36L1 as a key post-transcriptional regulatory checkpoint of CD4+ TCTX activity and a potential immunotherapy target in cancer.

immunology↗

Distinct TCR repertoire diversity, clonality and MHC-restriction in foetal and adult thymus

Here we sequenced rearranged TCR{beta} and TCR chain sequences in CD4+CD8+ double positive (DP), CD4+CD8-single positive (SP4) and CD4-CD8+ (SP8) thymocyte populations from the foetus and young adult mouse. We found that life-stage had a greater impact on TCR{beta} and TCR gene segment usage than cell-type. Foetal repertoires showed bias towards 3TRAV and 5TRAJ rearrangements in all populations, whereas adult repertoires used more 5TRAV gene segments, suggesting that progressive TCR rearrangements occur less frequently in foetal DP cells. When we synchronised young adult DP thymocyte differentiation by hydrocortisone treatment the new recovering DP thymocyte population showed more foetal-like 3TRAV and 5TRAJ gene segment usage. In foetus we identified less influence of MHC-restriction on -chain and {beta}-chain combinatorial VxJ usage and CDR1xCDR2 (V region) usage in SP compared to adult, indicating weaker impact of MHC-restriction on the foetal TCR repertoire. The foetal TCR{beta} repertoire was less diverse, less evenly distributed, with fewer non-template insertions, and all foetal populations contained more clonotypic expansions than adult. The differences between the foetal and adult thymus TCR repertoires are consistent with the foetal thymus producing {beta}T-cells with properties and functions that are distinct from adult T-cells: their repertoire is less governed by MHC-restriction, with preference for particular gene segment usage, less diverse with more clonotypic expansions, and more closely encoded by genomic sequence.

immunology↗