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Interference with gene regulation in living sea urchin embryos: Transcription factor Knock Out (TKO), a genetically controlled vector for blockade of specific transcription factors

机译:干扰活海胆胚胎中的基因调控:转录因子敲除(TKO),一种基因控制的载体,可阻断特定的转录因子

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摘要

“TKO” is an expression vector that knocks out the activity of a transcription factor in vivo under genetic control. We describe a successful test of this concept that used a sea urchin transcription factor of known function, P3A2, as the target. The TKO cassette employs modular cis-regulatory elements to express an encoded single-chain antibody that prevents the P3A2 protein from binding DNA in vivo. In normal development, one of the functions of the P3A2 transcription factor is to repress directly the expression of the CyIIIa cytoskeletal actin gene outside the aboral ectoderm of the embryo. Ectopic expression in oral ectoderm occurs if P3A2 sites are deleted from CyIIIa expression constructs, and we show here that introduction of an αP3A2⋅TKO expression cassette causes exactly the same ectopic oral expression of a coinjected wild-type CyIIIa construct. Furthermore, the αP3A2⋅TKO cassette derepresses the endogenous CyIIIa gene in the oral ectoderm and in the endoderm. αP3A2⋅TKO thus abrogates the function of the endogenous SpP3A2 transcription factor with respect to spatial repression of the CyIIIa gene. Widespread expression of αP3A2⋅TKO in the endoderm has the additional lethal effect of disrupting morphogenesis of the archenteron, revealing a previously unsuspected function of SpP3A2 in endoderm development. In principle, TKO technology could be utilized for spatially and temporally controlled blockade of any transcription factor in any biological system amenable to gene transfer.
机译:“ TKO”是在基因控制下在体内敲除转录因子的活性的表达载体。我们描述了使用已知功能的海胆转录因子P3A2作为目标的这一概念的成功测试。 TKO盒采用模块化的顺式调控元件来表达编码的单链抗体,该抗体可防止P3A2蛋白在体内与DNA结合。在正常发育中,P3A2转录因子的功能之一是直接抑制Cybo3a细胞骨架肌动蛋白基因在胚轴外胚层外的表达。如果从CyIIIa表达构建体中删除了P3A2位点,则会在口腔外胚层中发生异位表达,并且我们在此处显示,引入αP3A2·TKO表达盒会导致与共注射野生型CyIIIa构建体完全相同的异位口腔表达。此外,αP3A2·TKO盒可抑制口腔外胚层和内胚层中的内源性CyIIIa基因。因此,αP3A2·TKO消除了内源性SpP3A2转录因子在CyIIIa基因的空间抑制方面的功能。 αP3A2·TKO在内胚层中的广泛表达具有破坏原肠动物形态发生的附加致死作用,揭示了SpP3A2在内胚层发育中未曾怀疑的功能。原则上,TKO技术可用于对任何适于基因转移的生物系统中的任何转录因子进行空间和时间控制封锁。

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