人类胎儿胸腺TCRBDJ转录本在阅读框使用方面的发育偏差在基因组TCRBDJ重排中不存在。

J F George, Y Matsuura, J A Byrne, E L Liu, D R Shaw, J F Kearney
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引用次数: 0

摘要

我们之前报道过,阅读框的使用和功能多样化是受发育调控的,几乎所有的TCRB DJ mRNA转录本在胎龄8周时使用单一阅读框,到成年时逐渐减少到50%。我们利用聚合酶链反应建立了7.7周、10周和16周以及成年胸腺TCRB基因座DJ重排的基因组文库。随机选择克隆并测序以确定连接序列和阅读帧利用率。由此产生的数据解决了这样一个假设,即在胎儿生命期间,在阅读框1中携带基因组关节的细胞被优先选择。这一假设预测,阅读框偏差也将在基因组DJ关节中观察到。相反,我们观察到在胎儿时期基因组D1s1 ==> J1s1关节中三个可能的d区阅读框的随机利用。在7.7周孕龄的第二个胸腺中,同时分离RNA和DNA并用于创建TCRBDJ转录物或重排文库,获得了类似的结果。我们得出结论,基因组D1s1-JB1s1重排中阅读框的利用是随机的,TCRB DJ转录本的mRNA转录本优先使用单个阅读框是基因组TCRB DJ关节在单个阅读框中优先转录的结果,或者TCRB DJ转录本的半衰期比阅读框2或3中的转录本更长。
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A developmental bias in reading frame usage by human fetal thymic TCRBDJ transcripts is not present in genomic TCRBDJ rearrangements.

We have previously reported that reading-frame usage and functional diversification is developmentally regulated, with virtually all TCRB DJ mRNA transcripts using a single reading frame at 8 weeks of gestational age, tapering to 50% by adult life. We used the polymerase chain reaction to create genomic libraries of DJ rearrangements in the TCRB locus from thymuses at 7.7, 10, and 16 weeks of gestational age, and from adult thymuses. Clones were randomly picked and sequenced to determine junctional sequences and reading-frame utilization. The resulting data address the hypothesis that cells bearing genomic joints in reading frame one are preferentially selected during fetal life. This hypothesis predicts that reading-frame bias would also be observed among genomic DJ joints. Instead, we observed random utilization of the three possible D-region reading frames among genomic D1s1 ==> J1s1 joints during fetal life. Similar results were obtained at 7.7 weeks of gestational age in a second thymus in which both RNA and DNA were simultaneously isolated and used to create libraries of TCRBDJ transcripts or rearrangements. We conclude that reading-frame utilization is random among genomic D1s1-JB1s1 rearrangements and that the preferential usage of a single reading frame among mRNA transcripts of TCRB DJ transcripts is the result of preferential transcription of genomic TCRB DJ joints in a single reading frame, or that TCRB DJ transcripts have a longer half-life than transcripts in reading frames two or three.

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