Lian C J, Rosendal S, MacInnes J I
Department of Veterinary Microbiology and Immunology, University of Guelph, Ontario, Canada.
Infect Immun. 1989 Nov;57(11):3377-82. doi: 10.1128/iai.57.11.3377-3382.1989.
This article describes the molecular cloning and expression of a hemolysin gene from a serotype 1 strain of Actinobacillus pleuropneumoniae. The hemolysin was a thermolabile protein with an apparent molecular weight of 29,500 (29.5K hemolysin). Unlike expression of the recently described 105K hemolysin of A. pleuropneumoniae (J. Frey and J. Nicolet, FEMS Microbiol. Lett. 55:41-46, 1988), expression of this hemolysin was not regulated by Ca2+. Antiserum prepared against the 105K hemolysin did not neutralize the activity of the 29.5K hemolysin; conversely, antiserum prepared against the 29.5K hemolysin did not neutralize the activity of the 105K hemolysin. The hemolytic activity was not neutralized with antisera against hemolytic Escherichia coli, Streptococcus agalactiae, or purified streptolysin O, but antisera prepared against recombinants containing the 29.5K gene and convalescent pig sera abrogated hemolytic activity. Although hemolytic activity could be detected in several strains of E. coli K-12 and in minicells expressing several different constructs encoding the 29.5K hemolysin, we could not rigorously exclude the possibility that the gene which we have isolated encodes a regulator of hemolytic activity rather than a hemolysin per se.
本文描述了来自胸膜肺炎放线杆菌1型菌株的溶血素基因的分子克隆及表达。该溶血素是一种热不稳定蛋白,表观分子量为29,500(29.5K溶血素)。与最近描述的胸膜肺炎放线杆菌105K溶血素的表达情况不同(J. Frey和J. Nicolet,《FEMS微生物学快报》55:41 - 46,1988),这种溶血素的表达不受Ca2+调控。针对105K溶血素制备的抗血清不能中和29.5K溶血素的活性;相反,针对29.5K溶血素制备的抗血清也不能中和105K溶血素的活性。溶血活性不能被针对溶血性大肠杆菌、无乳链球菌或纯化的链球菌溶血素O的抗血清中和,但针对含有29.5K基因的重组体以及康复猪血清制备的抗血清可消除溶血活性。尽管在几种大肠杆菌K - 12菌株以及表达几种不同编码29.5K溶血素构建体的微小细胞中都能检测到溶血活性,但我们不能完全排除我们所分离的基因编码的是溶血活性调节因子而非溶血素本身的可能性。