Locht C, Capiau C, Feron C
Department of Molecular and Cellular Biology, Smith Kline-Biologicals, Rixensart, Belgium.
Proc Natl Acad Sci U S A. 1989 May;86(9):3075-9. doi: 10.1073/pnas.86.9.3075.
The enzymatic ADP-ribosyltransferase activity associated with the S1 subunit of pertussis toxin is considered to be responsible for its biological effects. Although pertussis toxin has no significant homology to other ADP-ribosylating toxins such as diphtheria toxin and Pseudomonas aeruginosa exotoxin A, the results presented in this paper show that, as for diphtheria toxin and exotoxin A, tryptophan and glutamic acid residues are essential for the enzymatic activities of pertussis toxin. Moreover, a structural motif can be identified around the critical glutamic acid residue. Chemical modification or site-directed deletion or replacement of Trp-26 abolishes ADP-ribosyltransferase and the associated NAD glycohydrolase activities. Both enzymatic activities are also abolished when Glu-129 is deleted or replaced by aspartic acid. Mutations at the Glu-106 position do not significantly reduce the enzymatic activities of the S1 subunit. The mutations do not affect the ability of the different S1 forms to be recognized by a variety of monoclonal antibodies, including neutralizing antibodies. Pertussis toxin containing a deletion or replacement of Trp-26, Glu-129, or both in the S1 subunit should thus be devoid of toxic activities without losing its reactivity with protective antibodies and, therefore, could be safely included in new generation vaccines against whooping cough.
与百日咳毒素S1亚基相关的酶促ADP核糖基转移酶活性被认为是其生物学效应的原因。尽管百日咳毒素与其他ADP核糖基化毒素如白喉毒素和铜绿假单胞菌外毒素A没有显著的同源性,但本文给出的结果表明,与白喉毒素和外毒素A一样,色氨酸和谷氨酸残基对于百日咳毒素的酶活性至关重要。此外,在关键的谷氨酸残基周围可以识别出一种结构基序。对Trp-26进行化学修饰、定点缺失或替换会消除ADP核糖基转移酶及相关的NAD糖水解酶活性。当Glu-129被缺失或被天冬氨酸替换时,这两种酶活性也会被消除。Glu-106位置的突变不会显著降低S1亚基的酶活性。这些突变不影响不同形式的S1被包括中和抗体在内的多种单克隆抗体识别的能力。因此,在S1亚基中含有Trp-26、Glu-129缺失或替换或两者皆有的百日咳毒素应该没有毒性活性,同时又不会丧失其与保护性抗体的反应性,所以可以安全地包含在新一代百日咳疫苗中。