首页> 美国卫生研究院文献>Journal of Bacteriology >Salmonella typhimurium newD and Escherichia coli leuC genes code for a functional isopropylmalate isomerase in Salmonella typhimurium-Escherichia coli hybrids.
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Salmonella typhimurium newD and Escherichia coli leuC genes code for a functional isopropylmalate isomerase in Salmonella typhimurium-Escherichia coli hybrids.

机译:鼠伤寒沙门氏菌newD和大肠杆菌leuC基因编码鼠伤寒沙门氏菌-大肠杆菌杂种中的功能性异丙基苹果酸异构酶。

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摘要

The supQ newD gene substitution system in Salmonella typhimurium restores leucine prototrophy to leuD mutants by providing the newD gene product which is capable of replacing the missing leuD polypeptide in the isopropylmalate isomerase, a complex of the leuC and leuD gene product. Mutations in the supQ gene are required to make the newD protein available. An Escherichia coli F' factor was constructed which carried supQ- newD+ from S. typhimurium on a P22-specialized transducing genome. This F' pro lac (P22dsupQ394newD) episome was transferred into S. typhimurium strains containing th leuD798-ara deletion; the resulting merodiploid strains had a Leu+ phenotype, indicating that supQ- newD+ is dominant over supQ+ newD+, and eliminating the possibility that the supQ gene codes for a repressor of the newD gene. Furthermore, transfer of the F' pro lac (P22dsupQ39newD) into E. coli leuD deletion strains restored leucine prototrophy, showing that the S. typhimurium newD gene can complment the E. coli leuC gene. Growth rates of the S. typhimurium-E coli hybrid strains indicated that the mutant isopropylmalate isomerase in these strains does not induce a leucine limitation, as it does in S. typhimurium leuD supQ mutants. In vitro activity of the mutant isopropylmalate isomerase was demonstrated; the Km values for alpha-isopropylmalate of both the S. typhimurium leuC-newD isomerase and the S. typhimurium-E. coli hybrid isomerase were as much as 100 times higher than the Km values for alpha-isopropylmalate of the wild-type enzyme, which was 3 x 10(-4) M. Mutagenesis of E. coli leuD deletion strains failed to restore leucine prototrophy, indicating that E. coli does not have genes analogous to the S. typhimurium supQ newD genes, of that, if present, activation of a newD is a rare event or is lethal to the cell.
机译:鼠伤寒沙门氏菌中的supQ newD基因替代系统通过提供能够替代异丙基苹果酸异构酶(leuC和leuD基因产物的复合物)中缺失的leuD多肽的newD基因产物,将亮氨酸原营养型恢复为leuD突变体。需要supQ基因中的突变以使newD蛋白可用。构建了大肠杆菌F'因子,该因子在P22特异的转导基因组上携带鼠伤寒沙门氏菌的supQ-newD +。将该F'pro lac(P22dsupQ394newD)附加体转移到含有leuD798-ara缺失的鼠伤寒沙门氏菌菌株中。所得的类金属倍体菌株具有Leu +表型,表明supQ-newD +优于supQ + newD +,并消除了supQ基因编码newD基因阻遏物的可能性。此外,将F'lac(P22dsupQ39newD)转移到大肠杆菌leuD缺失菌株中恢复了亮氨酸原营养,表明鼠伤寒沙门氏菌newD基因可以补充大肠杆菌leuC基因。鼠伤寒沙门氏菌-大肠杆菌杂种菌株的生长速度表明,这些菌株中的突变体苹果酸异丙基丙二酸异构酶不像鼠伤寒沙门氏菌leuD supQ突变体那样诱导亮氨酸限制。突变体苹果酸异丙酯异构酶的体外活性得到证实;鼠伤寒沙门氏菌leuC-newD异构酶和鼠伤寒沙门氏菌-E的α-异丙基苹果酸的Km值。大肠杆菌杂种异构酶比野生型酶α-异丙基苹果酸的Km值高3倍(3 x 10(-4)M。)。大肠杆菌leuD缺失菌株的诱变未能恢复亮氨酸原营养,这表明大肠杆菌没有类似于鼠伤寒沙门氏菌supQ newD基因的基因,如果存在,则newD的激活极少发生或对细胞致命。

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