Smajs D, Pilsl H, Braun V
Department of Biology, Faculty of Medicine, Masaryk University, Brno, Czech Republic.
J Bacteriol. 1997 Aug;179(15):4919-28. doi: 10.1128/jb.179.15.4919-4928.1997.
A novel colicin, designated colicin U, was found in two Shigella boydii strains of serovars 1 and 8. Colicin U was active against bacterial strains of the genera Escherichia and Shigella. Plasmid pColU (7.3 kb) of the colicinogenic strain S. boydii M592 (serovar 8) was sequenced, and three colicin genes were identified. The colicin U activity gene, cua, encodes a protein of 619 amino acids (Mr, 66,289); the immunity gene, cui, encodes a protein of 174 amino acids (Mr, 20,688); and the lytic protein gene, cul, encodes a polypeptide of 45 amino acids (Mr, 4,672). Colicin U displays sequence similarities to various colicins. The N-terminal sequence of 130 amino acids has 54% identity to the N-terminal sequence of bacteriocin 28b produced by Serratia marcescens. Furthermore, the N-terminal 36 amino acids have striking sequence identity (83%) to colicin A. Although the C-terminal pore-forming sequence of colicin U shows the highest degree of identity (73%) to the pore-forming C-terminal sequence of colicin B, the immunity protein, which interacts with the same region, displays a higher degree of sequence similarity to the immunity protein of colicin A (45%) than to the immunity protein of colicin B (30.5%). Immunity specificity is probably conferred by a short sequence from residues 571 to residue 599 of colicin U; this sequence is not similar to that of colicin B. We showed that binding of colicin U to sensitive cells is mediated by the OmpA protein, the OmpF porin, and core lipopolysaccharide. Uptake of colicin U was dependent on the TolA, -B, -Q, and -R proteins. pColU is homologous to plasmid pSB41 (4.1 kb) except for the colicin genes on pColU. pSB41 and pColU coexist in S. boydii strains and can be cotransformed into Escherichia coli, and both plasmids are homologous to pColE1.
在两株血清型分别为1和8的痢疾志贺氏菌中发现了一种新型大肠杆菌素,命名为大肠杆菌素U。大肠杆菌素U对埃希氏菌属和志贺氏菌属的细菌菌株具有活性。对产生大肠杆菌素的菌株痢疾志贺氏菌M592(血清型8)的质粒pColU(7.3 kb)进行了测序,并鉴定出三个大肠杆菌素基因。大肠杆菌素U活性基因cua编码一个含619个氨基酸的蛋白质(Mr,66,289);免疫基因cui编码一个含174个氨基酸的蛋白质(Mr,20,688);裂解蛋白基因cul编码一个含45个氨基酸的多肽(Mr,4,672)。大肠杆菌素U与各种大肠杆菌素显示出序列相似性。130个氨基酸的N端序列与粘质沙雷氏菌产生的细菌素28b的N端序列有54%的同一性。此外,N端的36个氨基酸与大肠杆菌素A有显著的序列同一性(83%)。尽管大肠杆菌素U的C端成孔序列与大肠杆菌素B的成孔C端序列有最高程度的同一性(73%),但与同一区域相互作用的免疫蛋白与大肠杆菌素A的免疫蛋白的序列相似性(45%)高于与大肠杆菌素B的免疫蛋白的序列相似性(30.5%)。免疫特异性可能由大肠杆菌素U中从第571位残基到第599位残基的短序列赋予;该序列与大肠杆菌素B的序列不相似。我们表明,大肠杆菌素U与敏感细胞的结合是由OmpA蛋白、OmpF孔蛋白和核心脂多糖介导的。大肠杆菌素U的摄取依赖于TolA、-B、-Q和-R蛋白。除了pColU上的大肠杆菌素基因外,pColU与质粒pSB41(4.1 kb)同源。pSB41和pColU共存于痢疾志贺氏菌菌株中,并且可以共转化到大肠杆菌中,这两种质粒都与pColE1同源。