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Induction of the lac promoter in the absence of DNA loops and the stoichiometry of induction

机译:在不存在DNA环和诱导化学计量的情况下诱导lac启动子

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In vivo induction of the Escherichia coli lactose operon as a function of inducer concentration generates a sigmoidal curve, indicating a non-linear response. Suggested explanations for this dependence include a 2:1 inducer-repressor stoichiometry of induction, which is the currently accepted view. It is, however, known for decades that, in vitro, operator binding as a function of inducer concentration is not sigmoidal. This discrepancy between in vivo and in vitro data has so far not been resolved. We demonstrate that the in vivo non-linearity of induction is due to cooperative repression of the wild-type lac operon through DNA loop formation. In the absence of DNA loops, in vivo induction curves are hyperbolic. In the light of this result, we re-address the question of functional molecular inducer-repressor stoichiometry in induction of the lac operon.
机译:大肠杆菌乳糖操纵子的体内诱导作为诱导剂浓度的函数会产生S型曲线,表明存在非线性响应。关于这种依赖性的建议解释包括2:1诱导剂-阻遏剂化学计量比的诱导,这是目前公认的观点。然而,几十年来,已知在体外,作为诱导物浓度的函数的操纵子结合不是S形的。迄今为止,体内和体外数据之间的差异尚未解决。我们证明了诱导的体内非线性是由于野生型紫胶操纵子通过DNA环形成的合作镇压。在没有DNA环的情况下,体内诱导曲线是双曲线的。根据此结果,我们重新解决了诱导lac操纵子的功能性分子诱导物-阻遏物化学计量的问题。

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