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The piggyBac Transposon as a Tool in Genetic Engineering

机译:Piggybac转座子作为基因工程的工具

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摘要

Transposons are mobile genetic elements that are part of the genomic DNA of numerous organisms and belong to two classes. Unlike class I transposons, class II DNA transposons do not use the stage of RNA synthesis in their transition; they perform it by the cut-and-paste mechanism or with a replicative transposition. The integration of a DNA transposon in a new site results in the duplication of a target sequence on either side of a transposon, and its excision is, as a rule, associated with insertions and deletions. The piggyBac transposon isolated from the Trichoplusia ni moth differs from other mobile elements of its class. Due to its unique ability to leave no traces after excision from an insertion site and to perform successful transposition and transference of large DNA fragments, piggyBac is a convenient tool for the development of gene engineering approaches. The TTAA sequence serves as a target site for transposon integration: insertion in the AT-rich DNA regions is more frequent. The ability of piggyBac to be transferred to a new area independently of the cell apparatus and to restore a DNA site without error after excision lies in the mechanism of its transposition, which is discussed in detail in the present review. Along with other transposons and viruses, the piggyBac transposon is widely used in the transgenesis of various organisms; it also finds application in insertion mutagenesis and gene therapy.
机译:转座子是流动遗传元素,是许多生物体的基因组DNA的一部分,属于两类。与I类转座子不同,II类DNA转座子在其过渡时不使用RNA合成的阶段;它们通过切割和粘贴机制或具有重复的转置来执行它。 DNA转座子在新位点中的整合导致转座子两侧的目标序列的重复,并且其切除通常与插入和删除相关联。从Trichoplusia Ni Moth中分离的Piggybac转座子与其班级的其他移动元件不同。由于其在从插入部位切除后留下没有痕迹的独特能力并进行成功的转置和大型DNA片段的转移,Piggybac是开发基因工程方法的方便工具。 TTAA序列用作转座子积分的靶位点:富含富含DNA区域的插入更频繁。 Piggybac以独立于电池装置转移到新区域的能力,并在切除后恢复没有误差的DNA位点在其转置的机制中,这在本综述中详细讨论。随着其他转座子和病毒,Piggybac转座子广泛用于各种生物的转基因中;它还发现插入诱变和基因治疗中的应用。

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