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CebR as a Master Regulator for Cellulose/Cellooligosaccharide Catabolism Affects Morphological Development in Streptomyces griseus▿ †

机译:CebR作为纤维素/纤维寡糖代谢的主要调节剂会影响灰链霉菌的形态发育▿†

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摘要

Streptomyces griseus mutants exhibiting deficient glucose repression of β-galactosidase activity on lactose-containing minimal medium supplemented with a high concentration of glucose were isolated. One of these mutants had a 12-bp deletion in cebR, which encodes a LacI/GalR family regulator. Disruption of cebR in the wild-type strain caused the same phenotype as the mutant, indicating that CebR is required for glucose repression of β-galactosidase activity. Recombinant CebR protein bound to a 14-bp inverted-repeat sequence (designated the CebR box) present in the promoter regions of cebR and the putative cellobiose utilization operon, cebEFG-bglC. The DNA-binding activity of CebR was impaired by cellooligosaccharides, including cellobiose, cellotriose, cellotetraose, cellopentaose, and cellohexaose. In agreement with this observation, transcription from the cebE and cebR promoters was greatly enhanced by the addition of cellobiose to the medium. Seven other genes containing one or two CebR boxes in their upstream regions were found in the S. griseus genome. Five of these genes encode putative secreted proteins: two cellulases, a cellulose-binding protein, a pectate lyase, and a protein of unknown function. These five genes and cebEFG-bglC were transcribed at levels 4 to 130 times higher in the ΔcebR mutant than in the wild-type strain, as determined by quantitative reverse transcription-PCR. These findings indicate that CebR is a master regulator of cellulose/cellooligosaccharide catabolism. Unexpectedly, the ΔcebR mutant formed very few aerial hyphae on lactose-containing medium, demonstrating a link between carbon source utilization and morphological development.
机译:分离出在添加了高浓度葡萄糖的含乳糖的基本培养基上对β-半乳糖苷酶活性缺乏葡萄糖抑制的灰链霉菌突变体。这些突变体之一在cebR中具有12 bp的缺失,其编码LacI / GalR家族调控因子。野生型菌株中cebR的破坏导致了与突变体相同的表型,表明CebR是葡萄糖抑制β-半乳糖苷酶活性所必需的。重组CebR蛋白与存在于cebR启动子区域和推定纤维二糖利用操纵子cebEFG-bglC中的14 bp反向重复序列(称为CebR框)结合。纤维寡糖包括纤维二糖,纤维三糖,纤维四糖,纤维戊糖和纤维己糖会削弱CebR的DNA结合活性。与该观察结果一致,通过向培养基中添加纤维二糖极大地增强了cebE和cebR启动子的转录。在灰糖链球菌基因组中发现了七个其他在其上游区域含有一个或两个CebR盒的基因。这些基因中的五个编码推测的分泌蛋白:两个纤维素酶,一个纤维素结合蛋白,一个果胶酸裂合酶和一个功能未知的蛋白。通过定量逆转录PCR确定,这五个基因和cebEFG-bglC在ΔcebR突变体中的转录水平比野生型菌株高4至130倍。这些发现表明,CebR是纤维素/纤维寡糖分解代谢的主要调节剂。出乎意料的是,ΔcebR突变体在含乳糖的培养基上几乎没有形成气生菌丝,表明碳源利用与形态发育之间存在联系。

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