Pugsley A P, Dupuy B
Unité de Génétique Moléculaire, CNRS UA 1149, Institut Pasteur, Paris, France.
Mol Microbiol. 1992 Mar;6(6):751-60. doi: 10.1111/j.1365-2958.1992.tb01525.x.
The last gene (pulO) of the pulC-O pullulanase secretion gene operon of Klebsiella oxytoca codes for a protein that is 52% identical to the product of the pilD/xcpA gene required for extracellular protein secretion and type IV pilus biogenesis in Pseudomonas aeruginosa. The PilD/XcpA protein is known to remove the first six amino acids of the signal sequence of the type IV pilin precursor by cleaving after the glycine residue in the conserved sequence GF(M)XXXE (where X represents hydrophobic amino acids). This prepilin peptidase cleavage site is present in the products of four genes in the pulC-O operon (PulG, PulH, Pull and PulJ proteins). It is shown here that PulO processes the pulG gene product in vivo. Processing was maximal within 15 seconds, but experiments in which the expression of pulO was uncoupled from that of the other genes in the secretion operon suggest that processing can also occur post-translationally. The products of two pulG derivatives with internal inframe deletions were also processed by PulO, but the three PulG-PhoA hybrids, two PulJ-PhoA hybrids and the single PulH-PhoA hybrid tested did not appear to be processed. Sucrose gradient fraction experiments showed that both precursor and mature forms of PulG appear to be associated with low-density, outer membrane vesicles prepared by osmotic lysis of sphaeroplasts. Neither the xcpA gene nor the Bacillus subtilis gene comC, which is also homologous to pulO and codes for a protein with type IV prepilin peptidase activity, can correct the pullulanase secretion defect in an Escherichia coli strain carrying all of the genes required for secretion except pulO. Furthermore, neither XcpA nor ComC is able to process prePulG protein in vivo.
产酸克雷伯菌的pulC - O支链淀粉酶分泌基因操纵子的最后一个基因(pulO)编码一种蛋白质,该蛋白质与铜绿假单胞菌细胞外蛋白质分泌和IV型菌毛生物合成所需的pilD/xcpA基因的产物有52%的同一性。已知PilD/XcpA蛋白通过在保守序列GF(M)XXXE(其中X代表疏水氨基酸)中的甘氨酸残基之后进行切割,去除IV型菌毛蛋白前体信号序列的前六个氨基酸。这种前菌毛蛋白酶切割位点存在于pulC - O操纵子中四个基因的产物(PulG、PulH、Pull和PulJ蛋白)中。本文表明PulO在体内加工PulG基因产物。加工在15秒内达到最大值,但将pulO的表达与分泌操纵子中的其他基因的表达解偶联的实验表明,加工也可以在翻译后发生。两个带有内部框内缺失的pulG衍生物的产物也被PulO加工,但测试的三个PulG - PhoA杂种、两个PulJ - PhoA杂种和单个PulH - PhoA杂种似乎未被加工。蔗糖梯度分级实验表明,PulG的前体和成熟形式似乎都与通过原生质球渗透裂解制备的低密度外膜囊泡相关。xcpA基因和枯草芽孢杆菌基因comC(其也与pulO同源并编码具有IV型前菌毛蛋白酶活性的蛋白质)都不能纠正携带除pulO外所有分泌所需基因的大肠杆菌菌株中的支链淀粉酶分泌缺陷。此外,XcpA和ComC都不能在体内加工前PulG蛋白。