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通过CD79荧光报告转基因揭示的斑马鱼B细胞发育过程中不存在前B细胞阶段

Zebrafish B Cell Development without a Pre-B Cell Stage, Revealed by CD79 Fluorescence Reporter Transgenes.

作者信息

Liu Xingjun, Li Yue-Sheng, Shinton Susan A, Rhodes Jennifer, Tang Lingjuan, Feng Hui, Jette Cicely A, Look A Thomas, Hayakawa Kyoko, Hardy Richard R

机构信息

Fox Chase Cancer Center, Philadelphia, PA 19111.

DNA Sequencing and Genomic Core, National Institutes of Health, Bethesda, MD 20892.

出版信息

J Immunol. 2017 Sep 1;199(5):1706-1715. doi: 10.4049/jimmunol.1700552. Epub 2017 Jul 24.

Abstract

CD79a and CD79b proteins associate with Ig receptors as integral signaling components of the B cell Ag receptor complex. To study B cell development in zebrafish, we isolated orthologs of these genes and performed in situ hybridization, finding that their expression colocalized with IgH-μ in the kidney, which is the site of B cell development. CD79 transgenic lines were made by linking the promoter and upstream regulatory segments of CD79a and CD79b to enhanced GFP to identify B cells, as demonstrated by PCR analysis of IgH-μ expression in sorted cells. We crossed these CD79-GFP lines to a recombination activating gene (Rag)2:mCherry transgenic line to identify B cell development stages in kidney marrow. Initiation of CD79:GFP expression in Rag2:mCherry cells and the timing of Ig H and L chain expression revealed simultaneous expression of both IgH-μ- and IgL-κ-chains, without progressing through the stage of IgH-μ-chain alone. Rag2:mCherry cells without CD79:GFP showed the highest Rag1 and Rag2 mRNAs compared with CD79a and CD79b:GFP B cells, which showed strongly reduced Rag mRNAs. Thus, B cell development in zebrafish does not go through a Rag CD79IgH-μ pre-B cell stage, different from mammals. After the generation of CD79:GFP B cells, decreased CD79 expression occurred upon differentiation to Ig secretion, as detected by alteration from membrane to secreted IgH-μ exon usage, similar to in mammals. This confirmed a conserved role for CD79 in B cell development and differentiation, without the requirement of a pre-B cell stage in zebrafish.

摘要

CD79a和CD79b蛋白作为B细胞抗原受体复合物的组成信号成分与免疫球蛋白(Ig)受体相关联。为了研究斑马鱼中的B细胞发育,我们分离了这些基因的直系同源物并进行原位杂交,发现它们的表达与IgH-μ在肾脏中共同定位,而肾脏是B细胞发育的部位。通过将CD79a和CD79b的启动子和上游调控区段与增强型绿色荧光蛋白(GFP)连接来构建CD79转基因品系,以鉴定B细胞,这通过对分选细胞中IgH-μ表达的PCR分析得以证明。我们将这些CD79-GFP品系与重组激活基因(Rag)2:mCherry转基因品系杂交,以鉴定肾脏骨髓中的B细胞发育阶段。Rag2:mCherry细胞中CD79:GFP表达的起始以及Ig重链(H)和轻链(L)表达的时间显示IgH-μ链和IgL-κ链同时表达,而没有单独经过IgH-μ链阶段。与CD79a和CD79b:GFP B细胞相比,没有CD79:GFP的Rag2:mCherry细胞显示出最高的Rag1和Rag2 mRNA,而CD79a和CD79b:GFP B细胞的Rag mRNA则大幅降低。因此,斑马鱼中的B细胞发育不经过Rag CD79 IgH-μ前B细胞阶段,这与哺乳动物不同。在产生CD79:GFP B细胞后,向Ig分泌分化时CD79表达降低,这通过从膜结合型IgH-μ外显子使用到分泌型IgH-μ外显子使用的改变得以检测,类似于哺乳动物中的情况。这证实了CD79在B细胞发育和分化中具有保守作用,而斑马鱼中不需要前B细胞阶段。

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