免疫衰老
端粒
CD28
CD8型
生物
衰老
脱颗粒
免疫学
人口
T细胞
细胞生物学
细胞毒性T细胞
抗原
医学
遗传学
免疫系统
受体
体外
环境卫生
DNA
作者
Paola Cura Daball,Mónica S. Ventura Ferreira,Sandra Ammann,Christian Klemann,Myriam Ricarda Lorenz,Ursula Warthorst,Timothy Ronan Leahy,Niall Conlon,Justin Roche,Pere Soler‐Palacín,Marina García-Prat,Ilka Fuchs,Sebastian Fuchs,Fabian Beier,Tim H. Brümmendorf,Carsten Speckmann,Peter Olbrich,Olaf Neth,Klaus Schwarz,Stephan Ehl
摘要
Premature T-cell immunosenescence with CD57+ CD8+ T-cell accumulation has been linked to immunodeficiency and autoimmunity in primary immunodeficiencies including activated PI3 kinase delta syndrome (APDS). To address whether CD57 marks the typical senescent T-cell population seen in adult individuals or identifies a distinct population in APDS, we compared CD57+ CD8+ T cells from mostly pediatric APDS patients to those of healthy adults with similarly prominent senescent T cells. CD57+ CD8+ T cells from APDS patients were less differentiated with more CD27+ CD28+ effector memory T cells showing increased PD1 and Eomesodermin expression. In addition, transition of naïve to CD57+ CD8+ T cells was not associated with the characteristic telomere shortening. Nevertheless, they showed the increased interferon-gamma secretion, enhanced degranulation and reduced in vitro proliferation typical of senescent CD57+ CD8+ T cells. Thus, hyperactive PI3 kinase signaling favors premature accumulation of a CD57+ CD8+ T-cell population, which shows most functional features of typical senescent T cells, but is different in terms of differentiation and relative telomere shortening. Initial observations indicate that this specific differentiation state may offer the opportunity to revert premature T-cell immunosenescence and its potential contribution to inflammation and immunodeficiency in APDS.
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