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Mechanism of augmentation of the antibody response in vitro by 2- mercaptoethanol in murine lymphocytes. I. 2-Mercaptoethanol-induced stimulation of the uptake of cystine, an essential amino acid

机译:2-巯基乙醇在鼠淋巴细胞中增强抗体应答的机制。 I. 2-巯基乙醇诱导的胱氨酸(一种必需氨基酸)的摄取刺激

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摘要

The mechanism of augmentation of the primary antibody response in vitro by 2-mercaptoethanol (2-ME) was investigated. By using cystine-free RPMI 1640 medium, it was demonstrated that cyst(e)ine was absolutely required for eliciting the following murine lymphocyte reactions: antibody response to sheep erythrocytes, proliferative response to concanavalin A or lipopolysaccharide (LPS), and polyclonal antibody response induced by LPS. The maximal antibody response was attained with 2.5-5 mM cysteine or half-cystine. The serial feeding of fresh cysteine markedly amplified its capacity to support antibody response particularly when cysteine concentration was suboptimal. Such an effect was not observed in the serial addition of cystine. On the other hand, the dose-response curve of cystine was dramatically shifted to lower concentrations by the addition of 2-ME (1 x 10(-5) M), which alone could not elicit the antibody response in the absence of cystine, nor could it augment furthermore the maximal response induced by 2.5 mM half-cystine. Commercially available RPMI 1640 medium contains 0.41 mM half-cystine, which proved to be a suboptimal concentration for eliciting the maximal response. 35S-cystine was incorporated into murine lymphocytes five to six times more slowly than 35S-cysteine. The rate of cystine uptake, however, was accelerated by 2.5-fold in the presence of 1 x 10(-5) M 2-ME. A close correlation was observed between dose-response profiles of 2-ME in augmenting the antibody response and the stimulation of cystine uptake. These results strongly suggest that one of the roles of 2-ME in augmenting the antibody response in vitro is to facilitate the use of cystine contained in RPMI 1640 medium only at a suboptimal concentration.
机译:研究了2-巯基乙醇(2-ME)在体外增强一抗反应的机制。通过使用不含胱氨酸的RPMI 1640培养基,证明胱氨酸(e)是引发以下鼠淋巴细胞反应所绝对必需的:对绵羊红细胞的抗体反应,对伴刀豆球蛋白A或脂多糖(LPS)的增殖反应以及多克隆抗体反应由LPS诱导。用2.5-5 mM半胱氨酸或半胱氨酸可获得最大的抗体反应。新鲜半胱氨酸的连续进料显着增强了其支持抗体反应的能力,特别是当半胱氨酸浓度不理想时。在连续添加胱氨酸中未观察到这种效果。另一方面,通过添加2-ME(1 x 10(-5)M),胱氨酸的剂量反应曲线显着转移到了较低的浓度,在没有胱氨酸的情况下,单独的胱氨酸不能引发抗体反应,它也不能进一步增强2.5 mM半胱氨酸诱导的最大反应。市售的RPMI 1640培养基含有0.41 mM半胱氨酸,事实证明它是引起最佳反应的次佳浓度。 35S-半胱氨酸掺入鼠淋巴细胞的速度是35S-半胱氨酸的五至六倍。然而,在1 x 10(-5)M 2-ME存在下,胱氨酸的摄取速率提高了2.5倍。观察到2-ME在增强抗体反应和剂量刺激胱氨酸中的剂量反应曲线之间存在密切的相关性。这些结果强烈表明2-ME在增强体外抗体应答中的作用之一是仅以次最佳浓度促进使用RPMI 1640培养基中所含的胱氨酸。

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