Combined Immunodeficiency Caused by a Novel Nonsense Mutation in LCK

T细胞受体 T细胞 CD28 无义突变 CD8型 生物 细胞毒性T细胞 ZAP70型 细胞生物学 信号转导 免疫学 突变 癌症研究 免疫系统 遗传学 错义突变 体外 基因
作者
Baerbel Keller,Shlomit Kfir‐Erenfeld,Paul Matusewicz,Frederike A. Hartl,Atar Lev,Yu Nee Lee,Amos J. Simon,Tali Stauber,Orly Elpeleg,Raz Somech,Polina Stepensky,Susana Minguet,Burkhart Schraven,Klaus Warnatz
出处
期刊:Journal of Clinical Immunology [Springer Science+Business Media]
卷期号:44 (1) 被引量:5
标识
DOI:10.1007/s10875-023-01614-4
摘要

Mutations affecting T-cell receptor (TCR) signaling typically cause combined immunodeficiency (CID) due to varying degrees of disturbed T-cell homeostasis and differentiation. Here, we describe two cousins with CID due to a novel nonsense mutation in LCK and investigate the effect of this novel nonsense mutation on TCR signaling, T-cell function, and differentiation. Patients underwent clinical, genetic, and immunological investigations. The effect was addressed in primary cells and LCK-deficient T-cell lines after expression of mutated LCK. RESULTS: Both patients primarily presented with infections in early infancy. The LCK mutation led to reduced expression of a truncated LCK protein lacking a substantial part of the kinase domain and two critical regulatory tyrosine residues. T cells were oligoclonal, and especially naïve CD4 and CD8 T-cell counts were reduced, but regulatory and memory including circulating follicular helper T cells were less severely affected. A diagnostic hallmark of this immunodeficiency is the reduced surface expression of CD4. Despite severely impaired TCR signaling mTOR activation was partially preserved in patients' T cells. LCK-deficient T-cell lines reconstituted with mutant LCK corroborated partially preserved signaling. Despite detectable differentiation of memory and effector T cells, their function was severely disturbed. NK cell cytotoxicity was unaffected. Residual TCR signaling in LCK deficiency allows for reduced, but detectable T-cell differentiation, while T-cell function is severely disturbed. Our findings expand the previous report on one single patient on the central role of LCK in human T-cell development and function.
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