Institute of Molecular Biology, Biocenter Innsbruck, Medical University of Innsbruck, Innsbruck, Austria.
Department of Clinical Microbiology, School of Medicine, Trinity College Dublin, The University of Dublin, Dublin, Ireland.
Microbiol Spectr. 2022 Dec 21;10(6):e0367022. doi: 10.1128/spectrum.03670-22. Epub 2022 Nov 9.
Inducible promoters are indispensable elements when considering the possibility to modulate gene expression on demand. Desirable traits of conditional expression systems include their capacity for tight downregulation, high overexpression, and in some instances for fine-tuning, to achieve a desired product's stoichiometry. Although the number of inducible systems is slowly increasing, suitable promoters comprising these features are rare. To date, the concomitant use of multiple regulatable promoter platforms for controlled multigene expression has been poorly explored. This work provides pioneer work in the human pathogenic fungus Aspergillus fumigatus, wherein we investigated different inducible systems, elucidated three candidate promoters, and proved for the first time that up to three systems can be used simultaneously without interfering with each other. Proof of concept was obtained by conditionally expressing three antifungal drug targets within the ergosterol biosynthetic pathway under the control of the xylose-inducible system, the tetracycline-dependent Tet-On system, and the thiamine-repressible system. In recent years, inducible promoters have gained increasing interest for industrial or laboratory use and have become key instruments for protein expression, synthetic biology, and metabolic engineering. Constitutive, high-expressing promoters can be used to achieve high expression yields; however, the continuous overexpression of specific proteins can lead to an unpredictable metabolic burden. To prevent undesirable effects on the expression host's metabolism, the utilization of tunable systems that allow expression of a gene product on demand is indispensable. Here, we elucidated several excellent tunable promoter systems and verified that each can be independently induced in a single strain to ultimately develop a unique conditional multigene expression system. This highly efficient, modular toolbox has the potential to significantly advance applications in fundamental as well as applied research in which regulatable expression of several genes is a key requirement.
诱导型启动子在考虑按需调节基因表达的可能性时是不可或缺的元素。条件表达系统的理想特征包括其紧密下调、高过表达的能力,在某些情况下还可以进行微调,以达到所需产物的化学计量比。尽管诱导型系统的数量在缓慢增加,但包含这些特征的合适启动子仍然很少。迄今为止,同时使用多个可调节启动子平台进行控制多基因表达的方法尚未得到充分探索。这项工作在人类致病性真菌烟曲霉中进行了开创性的工作,我们研究了不同的诱导型系统,阐明了三个候选启动子,并首次证明可以同时使用多达三个系统,而不会相互干扰。通过在麦角固醇生物合成途径中,受木糖诱导的系统、四环素依赖性 Tet-On 系统和硫胺素抑制的系统控制下,条件表达三种抗真菌药物靶点,证明了这一概念。近年来,诱导型启动子因其在工业或实验室中的应用而引起了越来越多的关注,已成为蛋白质表达、合成生物学和代谢工程的关键工具。组成型、高表达启动子可用于实现高表达产量;然而,特定蛋白质的持续过表达可能会导致不可预测的代谢负担。为了防止对表达宿主代谢产生不良影响,有必要使用可调系统,按需表达基因产物。在这里,我们阐明了几种优秀的可调启动子系统,并验证了每个系统都可以在单个菌株中独立诱导,最终开发出一种独特的条件多基因表达系统。这种高效、模块化的工具盒具有很大的潜力,可以显著推进基础研究和应用研究中的应用,其中多个基因的可调节表达是关键要求。