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首页> 外文期刊>The Journal of Experomental Medicine >Gene Dose–Dependent Maturation and Receptor Editing of B Cells Expressing Immunoglobulin (Ig)g1 or Igm/Igg1 Tail Antigen Receptors
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Gene Dose–Dependent Maturation and Receptor Editing of B Cells Expressing Immunoglobulin (Ig)g1 or Igm/Igg1 Tail Antigen Receptors

机译:表达免疫球蛋白(Ig)g1或Igm / Igg1尾巴抗原受体的B细胞的基因剂量依赖性成熟和受体编辑

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Conserved differences between the transmembrane and cytoplasmic domains of membrane immunoglobulin (Ig)M and IgG may alter the function of antigen receptors on naive versus memory B cells. Here, we compare the ability of these domains to signal B cell allelic exclusion and maturation in transgenic mice. A lysozyme-binding antibody was expressed in parallel sets of mice as IgM, IgG1, or a chimeric receptor with IgM extracellular domains and transmembrane/cytoplasmic domains of IgG1. Like IgM, the IgG1 or chimeric IgM/G receptors triggered heavy chain allelic exclusion and supported development of mature CD21+ B cells. Many of the IgG or IgM/G B cells became CD21high and downregulated their IgG and IgM/G receptors spontaneously, resembling memory B cells and B cells with mutations that exaggerate B cell antigen receptor signaling. Unlike IgM-transgenic mice, “edited” B cells that carry non–hen egg lysozyme binding receptors preferentially accumulated in IgG and IgM/G mice. This was most extreme in lines with the highest transgene copy number and diminished in variant offspring with fewer copies. The sensitivity of B cell maturation to transgene copy number conferred by the IgG transmembrane and cytoplasmic domains may explain the diverse phenotypes found in other IgG-transgenic mouse strains and may reflect exaggerated signaling.
机译:膜免疫球蛋白(Ig)M和IgG的跨膜结构域和胞质结构域之间的保守差异可能会改变幼稚与记忆B细胞上抗原受体的功能。在这里,我们比较了这些域在转基因小鼠中信号B细胞等位基因排斥和成熟的能力。溶菌酶结合抗体在小鼠平行组中表达为IgM,IgG1或具有IgM胞外域和IgG1跨膜/胞质域的嵌合受体。像IgM一样,IgG1或嵌合的IgM / G受体引发重链等位基因排斥并支持成熟CD21 + B细胞的发育。许多IgG或IgM / G B细胞变得CD21高,并自发下调其IgG和IgM / G受体,类似于记忆B细胞和B细胞,其突变会夸大B细胞抗原受体信号传导。与IgM转基因小鼠不同,携带非鸡卵溶菌酶结合受体的“编辑” B细胞优先聚集在IgG和IgM / G小鼠中。在具有最高转基因拷贝数的品系中,这是最极端的,而在具有更少拷贝的变种后代中,这是最极端的。 B细胞成熟对IgG跨膜和胞质域赋予的转基因拷贝数的敏感性可能解释了在其他IgG转基因小鼠品系中发现的不同表型,并且可能反映了夸大的信号传导。

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