Specialized Tfh cell subsets driving type-1 and type-2 humoral responses in lymphoid tissue.

IF 13 1区 生物学 Q1 CELL BIOLOGY Cell Discovery Pub Date : 2024-06-04 DOI:10.1038/s41421-024-00681-0
Saumya Kumar, Afonso P Basto, Filipa Ribeiro, Silvia C P Almeida, Patricia Campos, Carina Peres, Nadia Pulvirenti, Sarwah Al-Khalidi, Anna Kilbey, Jimena Tosello, Eliane Piaggio, Momtchilo Russo, Margarida Gama-Carvalho, Seth B Coffelt, Ed W Roberts, Jens Geginat, Helena F Florindo, Luis Graca
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Abstract

Effective antibody responses are essential to generate protective humoral immunity. Different inflammatory signals polarize T cells towards appropriate effector phenotypes during an infection or immunization. Th1 and Th2 cells have been associated with the polarization of humoral responses. However, T follicular helper cells (Tfh) have a unique ability to access the B cell follicle and support the germinal center (GC) responses by providing B cell help. We investigated the specialization of Tfh cells induced under type-1 and type-2 conditions. We first studied homogenous Tfh cell populations generated by adoptively transferred TCR-transgenic T cells in mice immunized with type-1 and type-2 adjuvants. Using a machine learning approach, we established a gene expression signature that discriminates Tfh cells polarized towards type-1 and type-2 response, defined as Tfh1 and Tfh2 cells. The distinct signatures of Tfh1 and Tfh2 cells were validated against datasets of Tfh cells induced following lymphocytic choriomeningitis virus (LCMV) or helminth infection. We generated single-cell and spatial transcriptomics datasets to dissect the heterogeneity of Tfh cells and their localization under the two immunizing conditions. Besides a distinct specialization of GC Tfh cells under the two immunizations and in different regions of the lymph nodes, we found a population of Gzmk+ Tfh cells specific for type-1 conditions. In human individuals, we could equally identify CMV-specific Tfh cells that expressed Gzmk. Our results show that Tfh cells acquire a specialized function under distinct types of immune responses and with particular properties within the B cell follicle and the GC.

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驱动淋巴组织中 1 型和 2 型体液反应的特化 Tfh 细胞亚群。
有效的抗体反应对产生保护性体液免疫至关重要。在感染或免疫过程中,不同的炎症信号会将 T 细胞极化为适当的效应表型。Th1和Th2细胞与体液反应的极化有关。然而,T 滤泡辅助细胞(Tfh)具有进入 B 细胞滤泡并通过提供 B 细胞帮助支持生殖中心(GC)反应的独特能力。我们研究了在1型和2型条件下诱导的Tfh细胞的特化。我们首先研究了在使用1型和2型佐剂免疫的小鼠中,由收养转移的TCR转基因T细胞产生的同源Tfh细胞群。利用机器学习方法,我们建立了一个基因表达特征,用于区分极化为1型和2型反应的Tfh细胞,即Tfh1和Tfh2细胞。我们根据淋巴细胞色素膜炎病毒(LCMV)或蠕虫感染后诱导的 Tfh 细胞数据集验证了 Tfh1 和 Tfh2 细胞的不同特征。我们生成了单细胞和空间转录组学数据集,以剖析两种免疫条件下 Tfh 细胞的异质性及其定位。除了GC Tfh细胞在两种免疫条件下和淋巴结的不同区域有不同的特异性外,我们还发现了Gzmk+ Tfh细胞群对1型免疫条件的特异性。在人类个体中,我们同样可以发现表达 Gzmk 的 CMV 特异性 Tfh 细胞。我们的研究结果表明,Tfh 细胞在不同类型的免疫反应中获得了专门的功能,并在 B 细胞滤泡和 GC 中具有特定的特性。
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来源期刊
Cell Discovery
Cell Discovery Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
24.20
自引率
0.60%
发文量
120
审稿时长
20 weeks
期刊介绍: Cell Discovery is a cutting-edge, open access journal published by Springer Nature in collaboration with the Center for Excellence in Molecular Cell Science, Chinese Academy of Sciences (CAS). Our aim is to provide a dynamic and accessible platform for scientists to showcase their exceptional original research. Cell Discovery covers a wide range of topics within the fields of molecular and cell biology. We eagerly publish results of great significance and that are of broad interest to the scientific community. With an international authorship and a focus on basic life sciences, our journal is a valued member of Springer Nature's prestigious Molecular Cell Biology journals. In summary, Cell Discovery offers a fresh approach to scholarly publishing, enabling scientists from around the world to share their exceptional findings in molecular and cell biology.
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