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通过比较遗传分析和遗传转化操作促进地衣芽孢杆菌 DSM13 中必需基因的直接条件性敲除。

Facilitation of direct conditional knockout of essential genes in Bacillus licheniformis DSM13 by comparative genetic analysis and manipulation of genetic competence.

机构信息

Westfälische Wilhelms-Universität Münster, Institut für Molekulare Mikrobiologie und Biotechnologie, Corrensstrasse 3, 48149 Münster, Germany.

出版信息

Appl Environ Microbiol. 2010 Aug;76(15):5046-57. doi: 10.1128/AEM.00660-10. Epub 2010 Jun 11.

Abstract

The genetic manageability of the biotechnologically important Bacillus licheniformis is hampered due to its poor transformability, whereas Bacillus subtilis efficiently takes up DNA during genetic competence, a quorum-sensing-dependent process. Since the sensor histidine kinase ComP, encoded by a gene of the quorum-sensing module comQXPA of B. licheniformis DSM13, was found to be inactive due to an insertion element within comP, the coding region was exchanged with a functional copy. Quorum sensing was restored, but the already-poor genetic competence dropped further. The inducible expression of the key regulator for the transcription of competence genes, ComK, in trans resulted in highly competent strains and facilitated the direct disruption of genes, as well as the conditional knockout of an essential operon. As ComK is inhibited at low cell densities by a proteolytic complex in which MecA binds ComK and such inhibition is antagonized by the interaction of MecA with ComS (the expression of the latter is controlled by cell density in B. subtilis), we performed an in silico analysis of MecA and the hitherto unidentified ComS, which revealed differences for competent and noncompetent strains, indicating that the reduced competence possibly is due to a nonfunctional coupling of the comQXPA-encoded quorum module and ComK. The obtained increased genetic tractability of this industrial workhorse should improve a wide array of scientific investigations.

摘要

由于生物技术上重要的地衣芽孢杆菌转化效率低,其遗传可操作性受到阻碍,而枯草芽孢杆菌在遗传感受态时能高效摄取 DNA,这是一个依赖于群体感应的过程。由于地衣芽孢杆菌 DSM13 中的群体感应模块 comQXPA 编码的传感器组氨酸激酶 ComP 由于插入元件而失活,因此将其编码区与功能性拷贝进行了交换。群体感应得以恢复,但已经很差的遗传感受态进一步下降。关键调控因子 ComK 的诱导表达在转录水平上增强了菌株的感受态,并促进了基因的直接敲除,以及必需操纵子的条件性敲除。由于 MecA 结合 ComK 并抑制低细胞密度下 ComK 的蛋白酶复合物,而 MecA 与 ComS 的相互作用拮抗这种抑制(后者的表达受枯草芽孢杆菌中细胞密度的控制),我们对地衣芽孢杆菌中迄今为止尚未鉴定的 ComS 进行了计算机分析,结果表明,在有或没有活性的 ComS 存在时,地衣芽孢杆菌和枯草芽孢杆菌的 MecA 存在差异,这表明降低的感受态可能是由于 comQXPA 编码的群体感应模块和 ComK 之间的功能耦合丧失。这种工业生产用菌遗传可操作性的提高,应该会改善一系列科学研究。

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