Haddad J E, al-Jaufy A Y, Jackson M P
Department of Immunology and Microbiology, Wayne State University School of Medicine, Detroit, Michigan 48201.
J Bacteriol. 1993 Aug;175(16):4970-8. doi: 10.1128/jb.175.16.4970-4978.1993.
The minimum sequence of the enzymatic (A) subunit of Shiga toxin (STX) required for activity was investigated by introducing N-terminal and C-terminal deletions in the molecule. Enzymatic activity was assessed by using an in vitro translation system. A 253-amino-acid STX A polypeptide, which is recognized as the enzymatically active portion of the 293-amino-acid A subunit, expressed less than wild-type levels of activity. In addition, alteration of the proposed nicking site between Ala-253 and Ser-254 by site-directed mutagenesis apparently prevented proteolytic processing but had no effect on the enzymatic activity of the molecule. Therefore, deletion analysis was used to identify amino acid residue 271 as the C terminus of the enzymatically active portion of the STX A subunit. STX A polypeptides with N-terminal and C-terminal deletions were released into the periplasmic space of Escherichia coli by fusion to the signal peptide and the first 22 amino acids of Shiga-like toxin type II, a member of the STX family. Although these fusion proteins expressed less than wild-type levels of enzymatic activity, they confirmed the previous finding that Tyr-77 is an active-site residue. Therefore, the minimum domain of the A polypeptide which was required for the expression of enzymatic activity was defined as StxA residues 75 to 268.
通过在分子中引入N端和C端缺失,研究了志贺毒素(STX)酶活性(A)亚基发挥活性所需的最小序列。使用体外翻译系统评估酶活性。一种253个氨基酸的STX A多肽,被认为是293个氨基酸A亚基的酶活性部分,其表达的活性水平低于野生型。此外,通过定点诱变改变Ala-253和Ser-254之间的假定切割位点显然阻止了蛋白水解加工,但对该分子的酶活性没有影响。因此,缺失分析用于确定氨基酸残基271为STX A亚基酶活性部分的C端。通过与信号肽和志贺样毒素II型(STX家族成员)的前22个氨基酸融合,将具有N端和C端缺失的STX A多肽释放到大肠杆菌的周质空间中。尽管这些融合蛋白表达的酶活性水平低于野生型,但它们证实了先前的发现,即Tyr-77是一个活性位点残基。因此,将表达酶活性所需的A多肽的最小结构域定义为StxA残基75至268。