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大肠杆菌热稳定肠毒素I的成熟途径:二硫键形成对二硫键异构酶A的需求

Maturation pathway of Escherichia coli heat-stable enterotoxin I: requirement of DsbA for disulfide bond formation.

作者信息

Yamanaka H, Kameyama M, Baba T, Fujii Y, Okamoto K

机构信息

Department of Biochemistry, Faculty of Pharmaceutical Sciences, Tokushima Bunri University, Japan.

出版信息

J Bacteriol. 1994 May;176(10):2906-13. doi: 10.1128/jb.176.10.2906-2913.1994.

Abstract

The Escherichia coli heat-stable enterotoxin STp is synthesized as a precursor consisting of pre, pro and mature regions. Mature STp is released into the culture supernatant and is composed of 18-amino-acid resides which contain three intramolecular disulfide bonds. The involvement of DsbA in the formation of the disulfide bonds of STp was examined in this study. A dsbA mutant was transformed with a plasmid harboring the STp gene, and the ST activity was significantly lower than that of the parent strain harboring the same plasmid. Furthermore, purified DsbA induced the conversion of synthetic STp peptide (inactive form) to the active form and increased the ST activity of the culture supernatant derived from the dsbA transformants. These results showed that DsbA directly catalyzes the formation of the disulfide bonds of STp. DsbA is located in periplasmic space, where STp is released as an intermediate form consisting of pro and mature regions. To examine the effect of the pro region on the action of DsbA, we replaced the cysteine residue at position 39 and tested the effect in vivo. The substitution caused a significant decrease of ST activity in the culture supernatant, the accumulation of inactive ST in periplasmic space, and an alteration in the cleavage site of the intermediate of STp. We conclude that Cys-39 is important for recognition by the processing enzymes required for the maturation of STp.

摘要

大肠杆菌热稳定肠毒素STp作为一种由前导区、原区和成熟区组成的前体进行合成。成熟的STp被释放到培养上清液中,由18个氨基酸残基组成,含有三个分子内二硫键。本研究检测了DsbA在STp二硫键形成中的作用。用携带STp基因的质粒转化dsbA突变体,其ST活性显著低于携带相同质粒的亲本菌株。此外,纯化的DsbA可诱导合成的STp肽(无活性形式)转化为活性形式,并提高dsbA转化体培养上清液的ST活性。这些结果表明,DsbA直接催化STp二硫键的形成。DsbA位于周质空间,STp以由原区和成熟区组成的中间形式释放到该空间。为了检测原区对DsbA作用的影响,我们替换了第39位的半胱氨酸残基并在体内测试其效果。该替换导致培养上清液中ST活性显著降低,周质空间中无活性ST的积累,以及STp中间体切割位点的改变。我们得出结论,Cys-39对于STp成熟所需加工酶的识别很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c516/205446/12ef9604ecf7/jbacter00028-0147-a.jpg

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