首页> 外文期刊>Journal of bacteriology >Mutation that suppresses the protein export defect of the secY mutation and causes cold-sensitive growth of Escherichia coli.
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Mutation that suppresses the protein export defect of the secY mutation and causes cold-sensitive growth of Escherichia coli.

机译:突变可抑制secY突变的蛋白质输出缺陷,并引起大肠杆菌的冷敏感生长。

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A cold-sensitive mutant was isolated among temperature-resistant revertants of the secY24 mutant defective in secretion of envelope proteins across the cytoplasmic membrane at 42 degrees C. A single mutation, designated ssyA3, is responsible both for the extragenic suppression of secY and for the cold-sensitive growth. In contrast to the parental secY24 mutant, the suppressed cells do not accumulate precursors of envelope proteins at any temperatures. The cells containing the ssyA3 mutation, whether in combination with secY24 or not, show an optimal growth at 42 degrees C and a very poor growth at 30 degrees C. At the low temperature, protein synthesis is generally slowed down, probably at the step of chain elongation. The gene ssyA was mapped at a new locus between hisS and glyA on the chromosome. It is possible that the product of this gene interacts both with the protein secretion system and the protein synthesizing system.
机译:在secY24突变体的耐温回复子中分离到一个冷敏感突变体,该回复子在42摄氏度时在细胞质膜上的包膜蛋白分泌缺陷。对寒冷敏感的增长。与亲本secY24突变体相反,被抑制的细胞在任何温度下都不会积累包膜蛋白的前体。包含ssyA3突变的细胞,无论是否与secY24结合,均在42摄氏度下显示最佳生长,在30摄氏度下显示非常差的生长。在低温下,蛋白质合成通常会减慢,可能是在链伸长。基因ssyA被定位在染色体上hisS和glyA之间的新位点。该基因的产物可能与蛋白质分泌系统和蛋白质合成系统相互作用。

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