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非洲爪蟾卵子发生过程中单个多聚腺苷酸化(pA+)RNA的积累。

Accumulation of individual pA+ RNAs during oogenesis of Xenopus laevis.

作者信息

Golden L, Schafer U, Rosbash M

出版信息

Cell. 1980 Dec;22(3):835-44. doi: 10.1016/0092-8674(80)90560-7.

Abstract

RNA metabolism during amphibian oogenesis has been investigated by the analysis of individual cDNA cloned sequences. Two cDNA clone libraries were constructed from the pA+ RNA of Xenopus ovary and of tadpole. The accumulation of RNAs complementary to individual clones was examined during oogenesis by isolating RNA from oocytes of different stages. There are only two patterns of accumulation during oogenesis. Mitochondrial mRNA sequences accumulate throughout all the stages of oogenesis, whereas all other sequences detected cease accumulation early in oogenesis and remain at a constant steady state level for the remainder of oocyte development. In the earliest stages examined, the individual RNAs are already present at approximately 1/4 their final level, and the subsequent increase of all sequences appears to be coordinant. These basic observations were confirmed by colony screening approximately 500 clones. The pattern of RNA accumulation observed is significant, because it had been determined that the total steady state pA+ RNA levels in the oocyte also ceased to increase at the same stage in oogenesis in which each individual sequenced reached a plateau level. In addition, lampbrush chromosomes, which have traditionally been thought to be the site of oocyte pA+ RNA synthesis, are maximally active after the stage in which all pA+ RNAs seem to have reached their final level of accumulation.

摘要

通过对单个cDNA克隆序列的分析,研究了两栖动物卵子发生过程中的RNA代谢。从非洲爪蟾卵巢和蝌蚪的多聚腺苷酸(pA+)RNA构建了两个cDNA克隆文库。在卵子发生过程中,通过从不同阶段的卵母细胞中分离RNA,检测了与单个克隆互补的RNA的积累情况。卵子发生过程中只有两种积累模式。线粒体mRNA序列在卵子发生的所有阶段都有积累,而检测到的所有其他序列在卵子发生早期就停止积累,并在卵母细胞发育的剩余阶段保持恒定的稳态水平。在最早检测的阶段,单个RNA已经以其最终水平的约1/4存在,并且所有序列的后续增加似乎是协同的。通过对大约500个克隆进行菌落筛选,证实了这些基本观察结果。观察到的RNA积累模式很重要,因为已经确定卵母细胞中总稳态pA+ RNA水平在卵子发生的同一阶段也停止增加,在该阶段每个单独测序的RNA达到平台期水平。此外,传统上被认为是卵母细胞pA+ RNA合成位点的灯刷染色体,在所有pA+ RNA似乎已达到其最终积累水平的阶段之后,活性最高。

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