Jarosz J
Department of Insect Pathology, Marie Curie-Skłodowska University, Lublin, Poland.
Parasitology. 1998 Sep;117 ( Pt 3):201-8. doi: 10.1017/s0031182098003011.
A specific extracellular proteinase, degrading selectively the cecropin-based defence system of insects, is secreted into the larval body during parasitism of the greater wax moth by the Heterorhabditis bacteriophora/Photorhabdus luminescens complex and by phase 1 of P. luminescens. The proteolytic digestion of insect inducible cecropin-like immune molecules was demonstrated by the disappearance of the Galleria mellonella cecropins and purified Hyalophora cecropin B peptide PAGE bands upon exposure to infected extracts, and a similar abrogation of antibacterial activity using an agar diffusion assay. Proteolytic activity of infected extracts produced by nematode/bacterial complex and phase 1 variant of P. luminescens was shown to be correlated with cecropin-inhibitory activity, suggesting that this anti-cecropin agent may be responsible for the ability of bacteria to establish infection and the insecticidal nature of H. bacteriophora. Antibacterial activity of Galleria lysozyme and that of chicken egg-white lysozyme to which P. luminescens is insensitive, was unaffected by H. bacteriophora proteinase.
一种特异性细胞外蛋白酶,可选择性降解昆虫基于天蚕素的防御系统,在嗜线虫致病杆菌/发光光杆状菌复合体以及发光光杆状菌1期感染大蜡螟幼虫期间分泌到幼虫体内。通过将感染提取物作用于大蜡螟天蚕素后其消失,以及使用琼脂扩散试验使纯化的透翅蛾天蚕素B肽聚丙烯酰胺凝胶电泳条带消失,证明了昆虫诱导的天蚕素样免疫分子的蛋白水解消化,并且使用琼脂扩散试验也显示出抗菌活性有类似的消除。线虫/细菌复合体和发光光杆状菌1期变体产生的感染提取物的蛋白水解活性与天蚕素抑制活性相关,这表明这种抗天蚕素剂可能是细菌建立感染能力和嗜线虫致病杆菌杀虫特性的原因。大蜡螟溶菌酶以及发光光杆状菌不敏感的鸡蛋白溶菌酶的抗菌活性不受嗜线虫致病杆菌蛋白酶的影响。