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是什么限制了类水手转座元件的活性。

What restricts the activity of mariner-like transposable elements.

作者信息

Hartl D L, Lozovskaya E R, Nurminsky D I, Lohe A R

机构信息

Department of Organismic and Evolutionary Biology, Harvard University, Cambridge, MA 02138, USA.

出版信息

Trends Genet. 1997 May;13(5):197-201. doi: 10.1016/s0168-9525(97)01087-1.

Abstract

A number of mechanisms have recently been described that might be important in restricting the level of activity of mariner-like transposable elements (MLEs) in natural populations. These mechanisms include overproduction inhibition, in which increasing the dose of transposase decreases net activity. Another mechanism is mediated by certain missense mutations, in which a mutant transposase protein impairs the activity of the wild-type transposase in heterozygous mutant/nonmutant genotypes. A further mechanism is the potential for transposase titration by defective elements that retain transposase binding activity. The issue of regulation is not only of theoretical importance in understanding the molecular and evolutionary genetics of MLEs, but also of practical significance in learning how best to use MLEs in the germline transformation of insect pests and disease vectors.

摘要

最近已经描述了许多机制,这些机制可能在限制自然种群中类水手转座元件(MLEs)的活性水平方面很重要。这些机制包括过量产生抑制,即增加转座酶的剂量会降低净活性。另一种机制由某些错义突变介导,其中突变的转座酶蛋白在杂合突变体/非突变体基因型中损害野生型转座酶的活性。进一步的机制是保留转座酶结合活性的缺陷元件对转座酶进行滴定的可能性。调控问题不仅在理解MLEs的分子和进化遗传学方面具有理论重要性,而且在了解如何最好地在害虫和病媒的种系转化中使用MLEs方面也具有实际意义。

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