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Switching the mechanism of mating type switching: a domesticated transposase supplants a domesticated homing endonuclease

机译:切换配对类型切换的机制:驯化的转座酶取代了驯化的归巢内切核酸酶

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摘要

Programmed DNA rearrangements are critical for the development of many organisms and, intriguingly, can be catalyzed by domesticated mobile genetic elements. In this issue of Genes & Development, Barsoum and colleagues (pp. 33–44) demonstrate that, in the budding yeast Kluyveromyces lactis, a DNA rearrangement associated with mating type switching requires a domesticated transposase and occurs through a mechanism distinct from that in the related yeast, Saccharomyces cerevisiae. Thus, mechanisms for mating type switching have evolved multiple times, indicating the relative ease with which mobile genetic elements can be captured.
机译:程序化的DNA重排对于许多生物体的发育至关重要,并且有趣的是,可以被驯化的移动遗传元件催化。在本期《基因与发展》中,Barsoum及其同事(第33-44页)证明,在发芽的酵母乳克鲁维酵母中,与交配类型转换相关的DNA重排需要驯化的转座酶,并且其发生机制与相关酵母,酿酒酵母。因此,交配类型转换的机制已经发展了许多次,表明相对容易捕获移动遗传元件。

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