Belin P, Quéméneur E, Boquet P L
Département d'Ingénierie et d'Etudes des Protéines, C.E. Saclay, CEA, Gif-sur-Yvette, France.
Mol Gen Genet. 1994 Jan;242(1):23-32. doi: 10.1007/BF00277344.
A one-step mutant of Escherichia coli K-12 lacking both glucose-1-phosphatase (Agp) and pH 2.5 acid phosphatase (AppA) activities in the periplasmic space was isolated. The mutation which mapped close to chlB, at 87 min on the E. coli linkage map, also caused the loss of alkaline phosphatase (PhoA) activity, even when this activity was expressed from TnphoA fusions to genes encoding periplasmic or membrane proteins. A DNA fragment that complements the mutation was cloned and shown to carry the dsbA gene, which encodes a periplasmic disulphide bond-forming factor. The mutant had an ochre triplet in dsbA, truncating the protein at amino acid 70. Introduction of TnphoA fusions into a plasmid-borne dsbA gene resulted in DsbA-PhoA hybrid proteins that were all exported to the periplasmic space in both dsbA+ and dsbA strains. They belong to three different classes, depending on the length of the DsbA fragment fused to PhoA. When PhoA was fused to an amino-terminal DsbA heptapeptide, the protein was only seen in the periplasm of a dsbA+ strain, as in the case of wild-type PhoA. Hybrid proteins missing up to 29 amino acids at the carboxy-terminus of DsbA were stable and retained both the DsbA and PhoA activities. Those with shorter DsbA fragments that still carried the -Cys-Pro-His-Cys- motif were rapidly degraded (no DsbA activity). The presence is discussed of a structural domain lying around amino acid 170 of DsbA and which is probably essential for its folding into a proteolytic-resistant and enzymatically active form.
分离出了大肠杆菌K-12的一个单步突变体,其周质空间中缺乏葡萄糖-1-磷酸酶(Agp)和pH 2.5酸性磷酸酶(AppA)活性。该突变位于大肠杆菌连锁图谱上87分钟处,靠近chlB,即使碱性磷酸酶(PhoA)活性是由TnphoA与编码周质或膜蛋白的基因融合表达的,该突变也会导致其活性丧失。克隆了一个能互补该突变的DNA片段,结果表明它携带dsbA基因,该基因编码一种周质二硫键形成因子。该突变体在dsbA中有一个赭石三联体,使蛋白质在氨基酸70处截短。将TnphoA融合体导入质粒携带的dsbA基因中,会产生DsbA-PhoA杂合蛋白,这些杂合蛋白在dsbA+和dsbA菌株中都能全部输出到周质空间。根据与PhoA融合的DsbA片段的长度,它们属于三种不同的类型。当PhoA与氨基末端的DsbA七肽融合时,该蛋白只在dsbA+菌株的周质中出现,与野生型PhoA的情况一样。在DsbA羧基末端缺失多达29个氨基酸的杂合蛋白是稳定的,并且保留了DsbA和PhoA的活性。那些带有仍携带-Cys-Pro-His-Cys-基序的较短DsbA片段的杂合蛋白会迅速降解(无DsbA活性)。文中讨论了dsbA中氨基酸170左右存在的一个结构域,它可能对其折叠成抗蛋白水解且具有酶活性的形式至关重要。