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百日咳毒素五个亚基的表达及免疫学特性

Expression and immunological properties of the five subunits of pertussis toxin.

作者信息

Nicosia A, Bartoloni A, Perugini M, Rappuoli R

出版信息

Infect Immun. 1987 Apr;55(4):963-7. doi: 10.1128/iai.55.4.963-967.1987.

Abstract

Pertussis toxin, a protein composed of five different subunits, is responsible for the pathogenicity of Bordetella pertussis and is the main component of a new vaccine against whooping cough. The genes coding for the five subunits, recently cloned and sequenced, are organized as an operon. We approached the problem of expression of the five genes in Escherichia coli and, although we obtained high levels of transcription of the native pertussis toxin genes, the amount of proteins produced was very low or undetectable. To obtain suitable expression of each of the five subunits, we fused their genes to the gene coding for the DNA polymerase of MS2 in the expression vector pEx31. A total of 5 to 30 mg of purified fusion proteins could be obtained from 1 liter of culture. The purified fusion proteins were used to immunize rabbits to obtain sera against each of the five subunits. These sera, although able to recognize the toxin in an enzyme-linked immunosorbent assay and the corresponding subunits in Western blots, were not able to protect CHO cells from the action of pertussis toxin. Mice immunized with the five subunits were not protected from an intracerebral challenge with B. pertussis. Subunits S2 and S3, which are 67% homologous, were shown to cross-react immunologically. The fused subunit S1 was able to ADP-ribosylate transducin as efficiently as the native pertussis toxin.

摘要

百日咳毒素是一种由五个不同亚基组成的蛋白质,它是百日咳博德特氏菌致病性的原因,也是一种新型百日咳疫苗的主要成分。编码这五个亚基的基因最近已被克隆和测序,并被组织成一个操纵子。我们研究了在大肠杆菌中表达这五个基因的问题,尽管我们获得了天然百日咳毒素基因的高水平转录,但产生的蛋白质数量非常低或无法检测到。为了使这五个亚基都能得到合适的表达,我们将它们的基因与表达载体pEx31中编码MS2 DNA聚合酶的基因融合。从1升培养物中总共可以获得5至30毫克纯化的融合蛋白。纯化的融合蛋白用于免疫兔子,以获得针对这五个亚基中每一个的血清。这些血清虽然能够在酶联免疫吸附测定中识别毒素,并在蛋白质印迹中识别相应的亚基,但却无法保护CHO细胞免受百日咳毒素的作用。用这五个亚基免疫的小鼠在接受百日咳博德特氏菌的脑内攻击时没有得到保护。显示同源性为67%的亚基S2和S3在免疫上发生交叉反应。融合的亚基S1能够像天然百日咳毒素一样有效地使转导蛋白进行ADP核糖基化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f095/260445/addf51681356/iai00088-0128-a.jpg

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