首页> 美国卫生研究院文献>The Journal of Experimental Medicine >The Long Isoform of Terminal Deoxynucleotidyl Transferase Enters the Nucleus And Rather than Catalyzing Nontemplated Nucleotide Addition Modulates the Catalytic Activity of the Short Isoform
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The Long Isoform of Terminal Deoxynucleotidyl Transferase Enters the Nucleus And Rather than Catalyzing Nontemplated Nucleotide Addition Modulates the Catalytic Activity of the Short Isoform

机译:末端脱氧核苷酸转移酶的长同工型进入细胞核而不是催化非模板核苷酸加成而不是调节短同工型的催化活性。

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摘要

During variable/diversity/joining (V[D]J) recombination, the enzyme terminal deoxynucleotidyl transferase (Tdt) adds random nucleotides at the junctions of the rearranging gene segments, increasing diversity of the antibody (Ab) and T cell receptor repertoires. Two splice variants of Tdt have been described, but only one (short isoform of Tdt [TdtS]) has been convincingly demonstrated to catalyze nontemplated (N) addition in vitro. We have expressed each splice variant of Tdt in transgenic (Tg) mice and found that the TdtS transgene catalyzes N addition on the endogenous Tdt−/− background and in fetal liver, but that the long isoform of Tdt (TdtL) transgene does neither. In contrast to previous in vitro results, both TdtS and TdtL are translocated to the nucleus in our model. Furthermore, TdtL/TdtS double Tg mice exhibit less N addition in fetal liver than do TdtS Tg mice. Whereas the TdtS transgene was shown to have functional consequences on the antiphosphorylcholine (PC) B cell repertoire, TdtL Tg mice exhibit a normal PC response, and Tdt−/− mice actually exhibit an increase in the PC response and in TEPC 15 idiotype+ Ab production. We conclude that TdtL localizes to the nucleus in vivo where it serves to modulate TdtS function.
机译:在可变/多样性/结合(V [D] J)重组期间,酶末端脱氧核苷酸转移酶(Tdt)在重排基因片段的连接处添加了随机核苷酸,从而增加了抗体(Ab)和T细胞受体组成的多样性。已经描述了Tdt的两个剪接变体,但是已经令人信服地证明了只有一个(Tdt的短同种型[TdtS])在体外催化非模板化(N)加成。我们已经在转基因(Tg)小鼠中表达了Tdt的每个剪接变体,并发现TdtS转基因在内源性Tdt -/ -背景和胎儿肝脏中催化N的添加,但Tdt的长同工型(TdtL)转基因都不起作用。与以前的体外结果相反,TdtS和TdtL均在我们的模型中易位至细胞核。此外,与TdtS Tg小鼠相比,TdtL / TdtS双Tg小鼠在胎儿肝脏中表现出的氮添加量更少。 TdtS转基因被证明对抗磷酸胆碱(PC)B细胞功能有影响,而TdtL Tg小鼠表现出正常的PC反应,而Tdt -/ -小鼠实际上表现出PC反应增加在TEPC 15独特型 + Ab生产中。我们得出的结论是,TdtL定位于体内的核,在这里它可以调节TdtS的功能。

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