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黑腹果蝇两个活跃的HeT-A反转座子的比较。

Comparison of two active HeT-A retroposons of Drosophila melanogaster.

作者信息

Biessmann H, Kasravi B, Bui T, Fujiwara G, Champion L E, Mason J M

机构信息

Developmental Biology Center, University of California, Irvine 92717.

出版信息

Chromosoma. 1994 Apr;103(2):90-8. doi: 10.1007/BF00352317.

Abstract

HeT-A elements are Drosophila melanogaster LINE-like retroposons that transpose to broken chromosome ends by attaching themselves with an oligo(A) tail. Since this family of elements is believed to be involved in the vital function of telomere elongation in Drosophila, it is important to understand their transposition mechanism and the molecular aspects of activity. By comparison of several elements we have defined here the unit length of HeT-A elements to be approximately 6 kb. Also, we studied an active HeT-A element that had transposed very recently to the end of a terminally deleted X chromosome. The 12 kb of newly transposed DNA consisted of a tandem array of three different HeT-A elements joined by oligo(A) tails to each other and to the chromosome end broken in the yellow gene. Such an array may have transposed as a single unit or resulted from rapid successive transpositions of individual HeT-A elements. By sequence comparison with another recently transposed HeT-A element, conserved domains in the single open reading frame (ORF), encoding a gag-like polypeptide, of these elements were defined. We conclude that for transposition an intact ORF is required in cis, while the reverse transcriptase is not encoded on the HeT-A element but is provided in trans. This would make HeT-A elements dependent on an external reverse transcriptase for transposition and establish control of the genome over the activity of HeT-A elements. This distinguishes the Drosophila HeT-A element, which has been implicated in Drosophila telomere elongation, from the other, 'selfish' LINE-like elements.

摘要

HeT - A元件是果蝇中的一类类似长散在重复序列(LINE)的逆转座子,它们通过自身附着一个寡聚(A)尾转座到断裂的染色体末端。由于这类元件被认为参与了果蝇端粒延长的重要功能,因此了解它们的转座机制和活性的分子层面非常重要。通过对多个元件的比较,我们在此确定HeT - A元件的单位长度约为6 kb。此外,我们研究了一个最近转座到一个末端缺失的X染色体末端的活跃HeT - A元件。新转座的12 kb DNA由三个不同的HeT - A元件串联排列组成,这些元件通过寡聚(A)尾相互连接,并与黄色基因处断裂的染色体末端相连。这样的阵列可能作为一个单一单元转座,也可能是单个HeT - A元件快速连续转座的结果。通过与另一个最近转座的HeT - A元件进行序列比较,确定了这些元件在编码类gag多肽的单一开放阅读框(ORF)中的保守结构域。我们得出结论,转座时顺式需要一个完整的ORF,而逆转录酶不是由HeT - A元件编码,而是由反式提供。这将使HeT - A元件在转座时依赖外部逆转录酶,并建立基因组对HeT - A元件活性的控制。这将参与果蝇端粒延长的果蝇HeT - A元件与其他“自私”的类似LINE的元件区分开来。

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