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粗多毛虫多线染色体中的差异复制和DNA消除

Differential replication and DNA elimination in the polytene chromosomes of Euplotes crassus.

作者信息

Frels J S, Tebeau C M, Doktor S Z, Jahn C L

机构信息

Department of Cell and Molecular Biology, Northwestern University Medical School, Chicago, Illinois 60611, USA.

出版信息

Mol Biol Cell. 1996 May;7(5):755-68. doi: 10.1091/mbc.7.5.755.

Abstract

The transposon-like Tec elements of Euplotes crassus are precisely excised during formation of polytene chromosomes in the developing macronucleus. To determine whether all Tec elements exhibit identical developmental timing of excision, we used polymerase chain reaction to visualize amplification and diminution at numerous randomly selected Tec insertion sites. Two classes of sites are evident. Early replicating sites show one or more rounds of amplification and diminution (corresponding to excision) and frequently occur within macronuclear-destined sequences. Late replicating sites do not undergo diminution until chromosome fragmentation and are predominantly associated with eliminated sequences. We conclude that the previously described clustering of macro-nuclear-destined sequences in the micronuclear genome allows for their differential replication at the polytene stage and results in targeting of these sequences for transcriptional activation and highly specific deletion and chromosome fragmentation processes.

摘要

在发育中的大核内多线染色体形成过程中,粗尾真核草履虫的转座子样Tec元件会被精确切除。为了确定所有Tec元件是否表现出相同的切除发育时间,我们使用聚合酶链反应来观察在众多随机选择的Tec插入位点处的扩增和消减情况。明显存在两类位点。早期复制位点显示一轮或多轮扩增和消减(对应于切除),并且经常出现在注定进入大核的序列内。晚期复制位点直到染色体断裂才会发生消减,并且主要与被消除的序列相关。我们得出结论,先前描述的微核基因组中注定进入大核的序列的聚类使得它们在多线阶段能够进行差异复制,并导致这些序列被靶向用于转录激活以及高度特异性的删除和染色体断裂过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/670d/275928/6757bf82dcba/mbc00012-0082-a.jpg

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