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Tracking membrane and secretory immunoglobulin alpha heavy chain mRNA variation during B-cell differentiation by real-time quantitative polymerase chain reaction.

机译:通过实时定量聚合酶链反应跟踪B细胞分化过程中的膜和分泌性免疫球蛋白α重链mRNA变化。

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摘要

Primary transcripts for all Ig heavy chain isotypes are alternatively processed to encode either secreted or membrane forms of the same antibody and, in plasma cells, a shift towards the secreted form occurs. In principle, measuring the relative quantities of secreted and membrane forms for a particular isotype could monitor B-cell plasmacytoid differentiation. Ratios of alpha heavy chain mRNA secreted (alphas) to membrane (alpham) form were assessed by quantitative reverse transcriptase-polymerase chain reaction (RT-PCR; TaqMan) using an IgA plasma cell line (NCI-H929), a surface IgA+ line (Dakiki) and human tonsillar B cells. While NCI-H929 cells showed the highest alphas: alpham ratio as expected, alphas mRNA predominated for all unstimulated B cells and Dakiki cells. Treatment of B cells and Dakiki cells with IL-2 and IL-10 resulted in a further progression towards the alphas form, correlating with increased human plasma cell antigen-1 (HPC1) mRNA levels. However, alpha mRNA processing and HPC1 expression were independently regulated, as IFN-gamma treatment suppressed HPC1 levels while increasing alphas: alpham ratios. Cytokine-mediated increases in the alphas: alpham ratio resulted from strongly enhanced levels of alphas with relatively constant alpham values. Differentiation-related changes in mRNA processing can thus be tracked by automated quantitative PCR.
机译:所有Ig重链同种型的初级转录本也经过处理以编码同一抗体的分泌形式或膜形式,并且在浆细胞中发生向分泌形式的转变。原则上,测量特定同种型的分泌形式和膜形式的相对量可以监测B细胞浆细胞样分化。使用IgA浆细胞系(NCI-H929),表面IgA +系(NCI-H929)通过定量逆转录酶-聚合酶链反应(RT-PCR; TaqMan)评估分泌的α重链mRNA与膜(αm)形式的比率。 Dakiki)和人类扁桃体B细胞。 NCI-H929细胞显示出最高的alphas:alpham比值,而alphas mRNA在所有未刺激的B细胞和Dakiki细胞中占主导地位。用IL-2和IL-10处理B细胞和Dakiki细胞导致进一步趋向于alpha形式,这与人类浆细胞抗原1(HPC1)mRNA水平升高相关。但是,α干扰素的加工和HPC1的表达受到独立调节,因为IFN-γ处理抑制了HPC1的水平,同时增加了α:αm的比例。细胞因子介导的alphas:alpham比值的增加是由于alpham值相对恒定而导致的alpha水平大大增强所致。因此,可以通过自动定量PCR追踪mRNA处理中与分化相关的变化。

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