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Cloning of a Beta-Hemolysin Gene of Brachyspira (Serpulina) hyodysenteriae and Its Expression in Escherichia coli

机译:猪痢疾短螺旋体β-溶血素基因的克隆及其在大肠杆菌中的表达

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摘要

Brachyspira (Serpulina) hyodysenteriae induces a mucohemorrhagic diarrheal disease in pigs. The production of a beta-hemolysin has been considered a major virulence attribute of this organism. Previous reports have failed to correlate a specific cloned gene sequence with a purified beta-hemolytic protein sequence. Thus, questions still remain concerning the structural gene sequence of the hemolysin. To answer this question unequivocally, the beta-hemolytic toxin was purified from extracts of log-phase spirochetes, and the N-terminal amino acid sequence was determined (K-D-V-V-A-N-Q-L-N-I-S-D-K) and compared with the translated sequences of previously cloned genes, tlyA to tlyC. The lack of homology between tlyA to tlyC translated sequences and the purified beta-hemolytic toxin sequence resulted in the study that is reported here. A degenerate probe was designed based on the N-terminal amino acid sequence of the purified beta-hemolysin and used to screen a B. hyodysenteriae genomic library. Three overlapping clones were identified, and one was sequenced to reveal an open reading frame coding for a putative 8.93-kDa polypeptide containing the N-terminal sequence of the purified beta-hemolysin. To distinguish this gene from the tlyA to tlyC genes, it has been designated hlyA. A hemolysis-negative Escherichia coli strains containing hlyA was beta-hemolytic on blood agar media. Also, the hemolytic activity of the recombinant protein had identical protease and lipase sensitivities and electrophoretic mobility to those of native B. hyodysenteriae beta-hemolysin. Based on sequence analysis, the translated protein had a pI of 4.3, an α-helical structure, and a phosphopantetheine binding motif. Hybridization analysis of genomic DNA indicated that the hlyA gene was present in B. hyodysenteriae and B. intermedia but was not detected in B. innocens, B. pilosicoli, or B. murdochii under high-stringency conditions. The location of hlyA on the chromosomal map was distinct from the locations of tlyA, tlyB, and tlyC.
机译:猪痢疾短螺旋体(Serpulina)诱发猪粘液出血性腹泻病。 β-溶血素的产生被认为是该生物的主要毒力属性。先前的报道未能将特定的克隆基因序列与纯化的β-溶血蛋白序列相关联。因此,关于溶血素的结构基因序列仍然存在疑问。为了明确回答这个问题,从对数期螺旋体的提取物中纯化了β溶血毒素,并确定了N端氨基酸序列(K-D-V-V-A-N-Q-L-N-I-S-D-K),并将其与先前克隆的基因tlyA至tlyC的翻译序列进行了比较。从tlyA到tlyC的翻译序列与纯化的β-溶血毒素序列之间缺乏同源性导致了此处报道的研究。基于纯化的β-溶血素的N末端氨基酸序列设计了简并探针,并用于筛选猪痢疾短螺旋体基因组文库。鉴定出三个重叠的克隆,并对一个克隆进行测序,以揭示编码包含纯化的β-溶血素N端序列的假定的8.93-kDa多肽的开放阅读框。为了将该基因与tlyA到tlyC基因区分开,已将其命名为hlyA。含有hlyA的溶血阴性大肠杆菌菌株在血琼脂培养基上呈β溶血状态。而且,重组蛋白的溶血活性与天然猪痢疾短螺旋体β-溶血素的蛋白酶和脂肪酶敏感性和电泳迁移率相同。基于序列分析,翻译的蛋白质具有4.3的pI,α-螺旋结构和磷酸泛肽结合基序。基因组DNA的杂交分析表明,hlyA基因存在于猪痢疾短螺旋体和中间芽孢杆菌中,但在高严紧条件下,在无病芽孢杆菌,B。pilosicoli或B. murdochii中均未检测到。 hlyA在染色体图上的位置与tlyA,tlyB和tlyC的位置不同。

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