Irons Eric E, Punch Patrick R, Lau Joseph T Y
Department of Molecular and Cellular Biology, Roswell Park Comprehensive Cancer Center, University at Buffalo, Buffalo, NY, United States.
Front Immunol. 2020 Apr 23;11:617. doi: 10.3389/fimmu.2020.00617. eCollection 2020.
Humoral immunity is an effective but metabolically expensive defense mechanism. It is unclear whether systemic cues exist to communicate the dynamic need for antigen presentation and immunoglobulin production. Here, we report a novel role for the liver-produced, acute phase reactant ST6GAL1 in IgG production. B cell expression of ST6GAL1, a sialyltransferase mediating the attachment of α2,6-linked sialic acids on N-glycans, is classically implicated in the dysregulated B cell development and immunoglobulin levels of -deficient mice. However, the blood-borne pool of ST6GAL1, upregulated during systemic inflammation, can also extrinsically modify leukocyte cell surfaces. We show that B cell independent, extracellular ST6GAL1 enhances B cell IgG production and increases blood IgG titers. B cells of mice lacking the hepatocyte specific promoter have reduced sialylation of cell surface CD22 and CD45 and produce less IgG upon stimulation. Sialylation of B cells by extracellular ST6GAL1 boosts expression of IgM, IgD, and CD86, proliferation, and IgG production . , elevation of blood ST6GAL1 enhances B cell development and systemic IgG in a CD22-dependent manner. Our data point to a function of an extracellular glycosyltransferase in promoting humoral immunity. Manipulation of systemic ST6GAL1 may represent an effective therapeutic approach for humoral insufficiency.
体液免疫是一种有效的但代谢成本高昂的防御机制。目前尚不清楚是否存在系统性信号来传达对抗原呈递和免疫球蛋白产生的动态需求。在此,我们报告肝脏产生的急性期反应物ST6GAL1在IgG产生中的新作用。ST6GAL1是一种唾液酸转移酶,介导α2,6连接的唾液酸在N-聚糖上的附着,其在B细胞中的表达通常与β-缺陷小鼠B细胞发育失调和免疫球蛋白水平有关。然而,在全身炎症期间上调的血源性ST6GAL1池也可以从外部修饰白细胞细胞表面。我们表明,B细胞非依赖性的细胞外ST6GAL1可增强B细胞IgG产生并提高血液IgG滴度。缺乏肝细胞特异性启动子的小鼠的B细胞表面CD22和CD45的唾液酸化减少,刺激后产生的IgG也减少。细胞外ST6GAL1对B细胞进行唾液酸化可促进IgM、IgD和CD86的表达、增殖以及IgG产生。此外,血液中ST6GAL1的升高以CD22依赖性方式增强B细胞发育和全身IgG水平。我们的数据表明细胞外糖基转移酶在促进体液免疫中具有一定功能。对全身ST6GAL1的调控可能代表一种治疗体液免疫不足的有效方法。