首页> 美国卫生研究院文献>Journal of Bacteriology >Overexpression of yccL (gnsA) and ydfY (gnsB) Increases Levels of Unsaturated Fatty Acids and Suppresses both the Temperature-Sensitive fabA6 Mutation and Cold-Sensitive secG Null Mutation of Escherichia coli
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Overexpression of yccL (gnsA) and ydfY (gnsB) Increases Levels of Unsaturated Fatty Acids and Suppresses both the Temperature-Sensitive fabA6 Mutation and Cold-Sensitive secG Null Mutation of Escherichia coli

机译:yccL(gnsA)和ydfY(gnsB)的过表达增加了不饱和脂肪酸的水平并抑制了温度敏感的fabA6突变和冷敏感的secG Null突变。

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摘要

A multicopy suppressor of the cold-sensitive secG null mutation was isolated. The suppressor contained sfa and yccL, the former of which has been reported to be a multicopy suppressor of the fabA6 mutation carried by a temperature-sensitive unsaturated fatty acid auxotroph. Subcloning of the suppressor gene revealed that yccL, renamed gnsA (secG null mutant suppressor), was responsible for the suppression of both the secG null mutation and the fabA6 mutation. In contrast, the sfa gene did not suppress the fabA6 mutation. The ydfY (gnsB) gene, encoding a protein which is highly similar to GnsA, also suppressed both the secG null mutation and the fabA6 mutation. Although both gnsA and gnsB are linked to cold shock genes, the levels of GnsA and GnsB did not exhibit a cold shock response. A gnsA-gnsB double null mutant grew normally under all conditions examined; thus, the in vivo functions of gnsA and gnsB remain unresolved. However, overexpression of gnsA and gnsB stimulated proOmpA translocation of the secG null mutant at low temperature and caused a significant increase in the unsaturated fatty acid content of phospholipids. Taken together, these results suggest that an increase in membrane fluidity due to the increase in unsaturated fatty acids compensates for the absence of the SecG function, especially at low temperature.
机译:分离了冷敏感的secG null突变的多拷贝抑制剂。该抑制剂含有sfa和yccL,据报道前者是由温度敏感的不饱和脂肪酸营养缺陷型携带的fabA6突变的多拷贝抑制剂。抑制基因的亚克隆表明,yccL(重命名为gnsA(secG无效突变抑制因子))负责secG无效突变和fabA6突变的抑制。相反,sfa基因不能抑制fabA6突变。编码与GnsA高度相似的蛋白质的ydfY(gnsB)基因也抑制了secG null突变和fabA6突变。尽管gnsA和 gnsB 均与冷休克基因相关,但GnsA和GnsB的水平并未表现出冷休克反应。 gnsA-gnsB 双无效突变体在所有检查条件下均正常生长;因此, gnsA gnsB 的体内功能尚未解决。然而, gnsA gnsB 的过表达在低温下刺激了 secG null突变体的proOmpA易位,并导致不饱和脂肪酸含量显着增加。磷脂。总而言之,这些结果表明由于不饱和脂肪酸的增加而引起的膜流动性的增加弥补了SecG功能的缺失,尤其是在低温下。

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