Novel Compound Heterozygous STK4 Variants Associated with Combined Immunodeficiency, Impaired Thymic Output, and Altered FOXO1-BACH2 Signaling

Serine/threonine kinase 4 (STK4) deficiency is a rare combined immunodeficiency (CID). This study aims to analyze the clinical and immunological characteristics of a child carrying novel compound heterozygous STK4 variants and to explore potential alterations in FOXO1-BACH2 signaling associated with impaired T-cell development and regulatory T cell (Treg) homeostasis. We collected the patient’s clinical data and performed genetic diagnosis using whole-exome sequencing followed by Sanger validation. T cell receptor (TCR) repertoire diversity was analyzed, and peripheral blood lymphocyte subsets and their functions were comprehensively evaluated via flow cytometry. Single-cell RNA sequencing was used to identify transcriptional alterations in major immune-cell populations. We then used Stk4 global knockout mice and an STK4 -knockdown cellular model, together with Western blotting, quantitative real-time PCR, and chromatin immunoprecipitation-qPCR, to examine the potential relationship among STK4 deficiency, FOXO1-related signaling, BACH2 expression, and Treg-associated immune alterations. The patient carried compound heterozygous STK4 variants (c.733C > T, and c.771dupT) and presented with a CID phenotype, characterized by recurrent infections, naïve T-cell lymphopenia, reduced recent thymic emigrants, restricted TCR repertoire diversity, and altered Treg homeostasis. BACH2 expression was reduced in the patient and in STK4-deficient experimental models, suggesting a potential regulatory association between STK4 deficiency and BACH2 downregulation. ChIP-qPCR in total thymocytes showed FOXO1 enrichment at the Bach2 promoter region, supporting a potential FOXO1-BACH2 transcriptional relationship. This study identifies novel pathogenic STK4 variants and expands the critical and immunological spectrum of STK4 deficiency. The most prominent immunological features were impaired thymic output, naïve T-cell depletion, and restricted TCR repertoire diversity. Altered FOXO1-BACH2 signaling may contribute, at least in part, to impaired Treg homeostasis.

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Publication Details

Journal
Journal of Clinical Immunology
Published
2026-09-05
DOI
https://doi.org/10.1007/s10875-026-02053-7
Primary Topic
FOXO transcription factor regulation
Type
article
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article

Novel Compound Heterozygous STK4 Variants Associated with Combined Immunodeficiency, Impaired Thymic Output, and Altered FOXO1-BACH2 Signaling

Zuochen Du, Ruihe Shi, Yin Zhu, Pei Huang et al.
Journal of Clinical Immunology
FOXO transcription factor regulation
article

Novel Compound Heterozygous STK4 Variants Associated with Combined Immunodeficiency, Impaired Thymic Output, and Altered FOXO1-BACH2 Signaling

Zuochen Du, Ruihe Shi, Yin Zhu, Pei Huang, Yaning Guan, Xiaoyu Sun, Lin Wang, Mei Ding, Qian Li, Jinling Song, Yanli Zhang, Shuo Shi
article en

Abstract

Serine/threonine kinase 4 (STK4) deficiency is a rare combined immunodeficiency (CID). This study aims to analyze the clinical and immunological characteristics of a child carrying novel compound heterozygous STK4 variants and to explore potential alterations in FOXO1-BACH2 signaling associated with impaired T-cell development and regulatory T cell (Treg) homeostasis. We collected the patient’s clinical data and performed genetic diagnosis using whole-exome sequencing followed by Sanger validation. T cell receptor (TCR) repertoire diversity was analyzed, and peripheral blood lymphocyte subsets and their functions were comprehensively evaluated via flow cytometry. Single-cell RNA sequencing was used to identify transcriptional alterations in major immune-cell populations. We then used Stk4 global knockout mice and an STK4 -knockdown cellular model, together with Western blotting, quantitative real-time PCR, and chromatin immunoprecipitation-qPCR, to examine the potential relationship among STK4 deficiency, FOXO1-related signaling, BACH2 expression, and Treg-associated immune alterations. The patient carried compound heterozygous STK4 variants (c.733C > T, and c.771dupT) and presented with a CID phenotype, characterized by recurrent infections, naïve T-cell lymphopenia, reduced recent thymic emigrants, restricted TCR repertoire diversity, and altered Treg homeostasis. BACH2 expression was reduced in the patient and in STK4-deficient experimental models, suggesting a potential regulatory association between STK4 deficiency and BACH2 downregulation. ChIP-qPCR in total thymocytes showed FOXO1 enrichment at the Bach2 promoter region, supporting a potential FOXO1-BACH2 transcriptional relationship. This study identifies novel pathogenic STK4 variants and expands the critical and immunological spectrum of STK4 deficiency. The most prominent immunological features were impaired thymic output, naïve T-cell depletion, and restricted TCR repertoire diversity. Altered FOXO1-BACH2 signaling may contribute, at least in part, to impaired Treg homeostasis.

Journal of Clinical Immunology
Zunyi Medical University (CN), National Clinical Research Center for Digestive Diseases (CN), First People’s Hospital of Zunyi (CN), Third Affiliated Hospital of Zhengzhou University (CN), Beijing Children’s Hospital (CN)
Openalex Percentile: Top 17%
FOXO transcription factor regulation
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