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Drosophila telomeres: an example of co-evolution with transposable elements

机译:果蝇端粒:与转座因子共同进化的一个例子

摘要

Telomeres have a DNA component composed of repetitive sequences. In most eukaryotes these repeats are very similar in length and sequence and are maintained by a highly conserved specialized cellular enzyme, telomerase. Some exceptions of the telomerase mechanism exist in eukaryotes of which the most studied are concentrated in insects, and from these, Drosophila species stand out in particular. The alternative mechanism of telomere maintenance in Drosophila is based on targeted transposition of 3 very special non-LTR retrotransposons, HeT-A, TART and TAHRE. The fingerprint of the co-evolution between the Drosophila genome and the telomeric retrotransposons is visible in special features of both. In this chapter, we will review the main aspects of Drosophila telomeres and the telomere retrotransposons that explain how this alternative mechanism works, is regulated, and evolves. By going through the different aspects of this symbiotic relationship, we will try to unravel which have been the necessary changes at Drosophila telomeres in order to exert their telomeric function analogously to telomerase telomeres, and also which particularities have been maintained in order to preserve the retrotransposon personality of HeT-A, TART and TAHRE. Drosophila telomeres constitute a remarkable variant that reminds us how exceptions should be treasured in order to widen our knowledge in any particular biological mechanism. Copyright © 2012 S. Karger AG, Basel.
机译:端粒具有由重复序列组成的DNA组分。在大多数真核生物中,这些重复序列在长度和序列上非常相似,并由高度保守的专门细胞酶端粒酶维持。端粒酶机制的某些例外情况存在于真核生物中,其中研究最多的是昆虫,而果蝇物种尤其突出。果蝇端粒维持的另一种机制是基于3种非常特殊的非LTR反转录转座子HeT-A,TART和TAHRE的靶向转座。果蝇基因组和端粒逆转座子之间共同进化的指纹在两者的特殊特征中均可见。在本章中,我们将介绍果蝇端粒和端粒逆转座子的主要方面,这些方面解释了这种替代机制的工作方式,调控方式和进化方式。通过研究这种共生关系的不同方面,我们将尝试揭示果蝇端粒的哪些必要变化,以便像端粒酶端粒一样发挥其端粒功能,并且为了保持逆转录转座子而保持了哪些特殊性HeT-A,TART和TAHRE的个性。果蝇端粒是一个了不起的变种,它提醒我们应该如何珍惜例外,以扩大我们在任何特定生物学机制中的知识。版权所有©2012 S.Karger AG,巴塞尔。

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