Yahr T L, Barbieri J T, Frank D W
Department of Microbiology, Medical College of Wisconsin, Milwaukee 53226, USA.
J Bacteriol. 1996 Mar;178(5):1412-9. doi: 10.1128/jb.178.5.1412-1419.1996.
Exoenzyme S is an ADP-ribosylating extracellular protein of Pseudomonas aeruginosa that is produced as two immunologically related forms, a 49-kDa enzymatically active form and a 53-kDa inactive form. The postulated relationship between the two proteins involves a carboxy-terminal proteolytic cleavage of the 53-kDa precursor to produce an enzymatically active 49-kDa protein. To determine the genetic relationship between the two forms of exoenzyme S, exoS (encoding the 49-kDa form) was used as a probe in Southern blot analyses of P. aeruginosa chromosomal digests. Cross-hybridizing bands were detected in chromosomal digests of a strain of P. aeruginosa in which exoS had been deleted by allelic exchange. A chromosomal bank was prepared from the exoS deletion strain, 388deltaexoS::TC, and screened with a probe internal to exoS. Thirteen clones that cross-hybridized with the exoS probe were identified. One representative clone contained the open reading frame exoT; this open reading frame encoded a protein of 457 amino acids which showed 75% amino acid identity to ExoS. The exoT open reading frame, cloned into a T7 expression system, produced a 53-kDa protein in Escherichia coli, termed Exo53, which reacted to antisera against exoenzyme S. A histidine-tagged derivative of recombinant Exo53 possessed approximately 0.2% of the ADP-ribosyltransferase activity of recombinant ExoS. Inactivation of exoT in an allelic-replacement strain resulted in an Exo53-deficient phenotype without modifying the expression of ExoS. These studies prove that the 53- and 49-kDa forms of exoenzyme S are encoded by separate genes. In addition, this is the first report of the factor-activating-exoenzyme-S-dependent ADP-ribosyltransferase activity of the 53-kDa form of exoenzyme S.
外毒素S是铜绿假单胞菌的一种ADP核糖基化细胞细胞外蛋白,它以两种免疫相关形式产生,一种是49 kDa的酶活性形式,另一种是53 kDa的无活性形式。这两种蛋白质之间推测的关系涉及53 kDa前体的羧基末端蛋白水解切割,以产生具有酶活性的49 kDa蛋白质。为了确定外毒素S两种形式之间的遗传关系,exoS(编码49 kDa形式)在铜绿假单胞菌染色体消化物的Southern印迹分析中用作探针。在通过等位基因交换缺失exoS的铜绿假单胞菌菌株的染色体消化物中检测到交叉杂交带。从exoS缺失菌株388deltaexoS::TC制备染色体文库,并用exoS内部的探针进行筛选。鉴定出13个与exoS探针交叉杂交的克隆。一个代表性克隆包含开放阅读框exoT;这个开放阅读框编码一种457个氨基酸的蛋白质,与外毒素S显示75%的氨基酸同一性。克隆到T7表达系统中的exoT开放阅读框在大肠杆菌中产生一种53 kDa的蛋白质,称为Exo53,它与抗外毒素S的抗血清发生反应。重组Exo53的组氨酸标签衍生物具有重组外毒素S的ADP核糖基转移酶活性的约0.2%。等位基因替换菌株中exoT的失活导致Exo53缺陷表型,而不改变外毒素S的表达。这些研究证明外毒素S的53 kDa和49 kDa形式由不同基因编码。此外,这是关于53 kDa形式的外毒素S的因子激活外毒素S依赖性ADP核糖基转移酶活性的首次报道。