Allard-Chamard Hugues, Hillier Kirsty, Ramseier Michelle L, Bertocchi Alice, Kaneko Naoki, Premo Katherine, Yuen Grace, Karpel Marshall, Mahajan Vinay S, Tsekeri Christina, Hong Joseph S, Vencic Jean, Crotty Rory, Sharda Anish V, Barmettler Sara, Westermann-Clark Emma, Walter Jolan E, Ghebremichael Musie, Shalek Alex K, Farmer Jocelyn R, Pillai Shiv
Ragon Institute of Mass General, Massachusetts Institute of Technology, and Harvard, Cambridge, MA.
Division of Rheumatology, Faculté de médecine et des sciences de la santé de l'Université de Sherbrooke et Centre de Recherche Clinique Étienne-Le Bel, Sherbrooke, QC, Canada.
Blood Adv. 2025 Feb 11;9(3):520-532. doi: 10.1182/bloodadvances.2024013267.
Patients with cytotoxic T-lymphocyte-associated protein 4 (CTLA4) deficiency exhibit profound humoral immune dysfunction, yet the basis for the B-cell defect is not known. We observed a marked reduction in transitional-to-follicular (FO) B-cell development in patients with CTLA4 deficiency, correlating with decreased CTLA4 function in regulatory T cells, increased CD40L levels in effector CD4+ T cells, and increased mammalian target of rapamycin complex 1 (mTORC1) signaling in transitional B cells (TrBs). Treatment of TrBs with CD40L was sufficient to induce mTORC1 signaling and inhibit FO B-cell maturation in vitro. Frequent cell-to-cell contacts between CD40L+ T cells and immunoglobulin D-positive CD27- B cells were observed in patient lymph nodes. FO B-cell maturation in patients with CTLA4 deficiency was partially rescued after CTLA4 replacement therapy in vivo. We conclude that functional regulatory T cells and the containment of excessive T-cell activation may be required for human TrBs to mature and attain metabolic quiescence at the FO B-cell stage.
细胞毒性T淋巴细胞相关蛋白4(CTLA4)缺陷患者表现出严重的体液免疫功能障碍,但其B细胞缺陷的原因尚不清楚。我们观察到CTLA4缺陷患者从过渡性B细胞向滤泡性(FO)B细胞发育显著减少,这与调节性T细胞中CTLA4功能降低、效应性CD4⁺T细胞中CD40L水平升高以及过渡性B细胞(TrB)中雷帕霉素复合物1(mTORC1)信号传导增加相关。用CD40L处理TrB足以在体外诱导mTORC1信号传导并抑制FO B细胞成熟。在患者淋巴结中观察到CD40L⁺T细胞与免疫球蛋白D阳性CD27⁻B细胞之间频繁的细胞间接触。在体内进行CTLA4替代治疗后,CTLA4缺陷患者的FO B细胞成熟得到部分挽救。我们得出结论,功能性调节性T细胞以及抑制过度的T细胞活化可能是人类TrB在FO B细胞阶段成熟并实现代谢静止所必需的。