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Surface μ Heavy Chain Signals Down-Regulation of the V(D)J-Recombinase Machinery in the Absence of Surrogate Light Chain Components

机译:在没有替代轻链组件的情况下,表面μ重链信号下调了V(D)J-重组酶机械的下调

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摘要

Early B cell development is characterized by stepwise, ordered rearrangement of the immunoglobulin (Ig) heavy (HC) and light (LC) chain genes. Only one of the two alleles of these genes is used to produce a receptor, a phenomenon referred to as allelic exclusion. It has been suggested that pre–B cell receptor (pre-BCR) signals are responsible for down-regulation of the VDJH-recombinase machinery (Rag1, Rag2, and terminal deoxynucleotidyl transferase [TdT]), thereby preventing further rearrangement on the second HC allele. Using a mouse model, we show that expression of an inducible μHC transgene in Rag2−/− pro–B cells induces down-regulation of the following: (a) TdT protein, (b) a transgenic green fluorescent protein reporter reflecting endogenous Rag2 expression, and (c) Rag1 primary transcripts. Similar effects were also observed in the absence of surrogate LC (SLC) components, but not in the absence of the signaling subunit Ig-α. Furthermore, in wild-type mice and in mice lacking either λ5, VpreB1/2, or the entire SLC, the TdT protein is down-regulated in μHC+LC− pre–B cells. Surprisingly, μHC without LC is expressed on the surface of pro–/pre–B cells from λ5−/−, VpreB1−/−VpreB2−/−, and SLC−/− mice. Thus, SLC or LC is not required for μHC cell surface expression and signaling in these cells. Therefore, these findings offer an explanation for the occurrence of HC allelic exclusion in mice lacking SLC components.
机译:早期B细胞发育的特征是免疫球蛋白(Ig)重(HC)和轻(LC)链基因的逐步,有序重排。这些基因的两个等位基因中只有一个用于产生受体,这种现象称为等位基因排斥。有人指出,前B细胞受体(pre-BCR)信号负责VDJH重组酶机制(Rag1,Rag2和末端脱氧核苷酸转移酶[TdT])的下调,从而防止了第二个HC上的进一步重排等位基因。使用小鼠模型,我们显示了Rag2-/-pro-B细胞中可诱导的μHC转基因的表达诱导下调:(a)TdT蛋白,(b)反映内源性Rag2表达的转基因绿色荧光蛋白报道分子,以及(c)Rag1主要成绩单。在没有替代LC(SLC)成分的情况下,也观察到了类似的效果,但是在没有信号亚基Ig-α的情况下,也观察到了类似的效果。此外,在野生型小鼠和缺乏λ5,VpreB1 / 2或整个SLC的小鼠中,TdT蛋白在μHC+ LC- pre-B细胞中被下调。令人惊讶的是,没有LC的μHC在λ5-/-,VpreB1-/-VpreB2-/-和SLC-/-小鼠的pro- / pre-B细胞表面表达。因此,μHC细胞表面表达和这些细胞中的信号转导不需要SLC或LC。因此,这些发现为缺乏SLC成分的小鼠中HC等位基因排斥的发生提供了解释。

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