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首页> 外文期刊>Journal of bacteriology >Myxococcus xanthus sasS encodes a sensor histidine kinase required for early developmental gene expression.
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Myxococcus xanthus sasS encodes a sensor histidine kinase required for early developmental gene expression.

机译:xanthus sasS粘球菌编码早期发育基因表达所需的传感器组氨酸激酶。

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Initiation of Myxococcus xanthus multicellular development requires integration of information concerning the cells' nutrient status and density. A gain-of-function mutation, sasB7, that bypasses both the starvation and high cell density requirements for developmental expression of the 4521 reporter gene, maps to the sasS gene. The wild-type sasS gene was cloned and sequenced. This gene is predicted to encode a sensor histidine protein kinase that appears to be a key element in the transduction of starvation and cell density inputs. The sasS null mutants express 4521 at a basal level, form defective fruiting bodies, and exhibit reduced sporulation efficiencies. These data indicate that the wild-type sasS gene product functions as a positive regulator of 4521 expression and participates in M. xanthus development. The N terminus of SasS is predicted to contain two transmembrane domains that would locate the protein to the cytoplasmic membrane. The sasB7 mutation, an E139K missense mutation, maps to the predicted N-terminal periplasmic region. The C terminus of SasS contains all of the conserved residues typical of the sensor histidine protein kinases. SasS is predicted to be the sensor protein in a two-component system that integrates information required for M. xanthus developmental gene expression.
机译:粘菌黄腐菌多细胞发育的启动需要整合有关细胞营养状况和密度的信息。功能获得突变sasB7绕开了sasS基因,该突变绕开了饥饿和高细胞密度要求,以实现4521报告基因的表达。克隆野生型sasS基因并测序。预测该基因编码传感器组氨酸蛋白激酶,该蛋白激酶似乎是饥饿和细胞密度输入转导中的关键元素。 sasS null突变体在基础水平上表达4521,形成有缺陷的子实体,并显示出降低的孢子形成效率。这些数据表明,野生型sasS基因产物可作为4521表达的正向调节子,并参与黄单胞菌的发育。预计SasS的N端包含两个跨膜结构域,这些结构域会将蛋白质定位在细胞质膜上。 sasB7突变(E139K错义突变)映射到预测的N末端周质区域。 SasS的C末端包含传感器组氨酸蛋白激酶的所有保守残基。预计SasS是两组分系统中的传感器蛋白,该系统整合了黄花菜发育基因表达所需的信息。

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