Arribas M, Blasi J, Egea G, Fariñas I, Solsona C, Marsal J
Departament de Biologia Cellular i Anatomia Patològica, Facultat de Medicina, Hospital de Bellvitge, Universitat de Barcelona, Spain.
J Neurosci Res. 1993 Dec 15;36(6):635-45. doi: 10.1002/jnr.490360604.
We report here on the synthesis and characterization of a fully active biotinylated derivative of the botulinum neurotoxin type A. Different ratios of biotin: botulinum toxin were tested to optimize derivatizing conditions and a ratio of 35:1 was selected for further experiments. The average number of biotin groups per toxin molecule was estimated to be 7.8, occurring at both heavy and light chains, and almost all externally located and easily accessible to recognition by streptavidin. The modified toxin retained its toxicity and its ability to interact with biological membranes. Apart from its suitability for detection in Western blots and in microtiter well plates, biotinylated botulinum toxin proved to be adequate for morphological labeling studies at both light and electron microscopy. Peroxidase histochemistry in cryostat sections of intoxicated rat hemidiaphragm muscles showed a distinct labeling of end-plates. Electron microscopy studies were performed on the electric organ of Torpedo marmorata using colloidal gold-conjugated streptavidin for detection. After intoxication of electric organ fragments with the modified toxin, gold labels were found associated with the presynaptic plasma membrane of nerve terminals and with the membrane of synaptic vesicles. Moreover, the distribution of biotinylated botulinum toxin binding sites over the membrane of synaptosomes isolated from the electric organ of Torpedo and their relationship with intramembrane particles were analyzed using the replica-staining label-fracture technique. It was found that the toxin is never associated with intramembrane particles.
我们在此报告A型肉毒杆菌神经毒素完全活性生物素化衍生物的合成与表征。测试了不同生物素与肉毒杆菌毒素的比例以优化衍生化条件,并选择35:1的比例进行进一步实验。每个毒素分子的生物素基团平均数量估计为7.8个,重链和轻链上均有,且几乎都位于外部,易于与抗生物素蛋白识别。修饰后的毒素保留了其毒性及其与生物膜相互作用的能力。除适用于蛋白质免疫印迹法和微量滴定板检测外,生物素化肉毒杆菌毒素还被证明适用于光镜和电镜下的形态学标记研究。在中毒大鼠半横膈肌冷冻切片上进行的过氧化物酶组织化学显示终板有明显标记。使用胶体金偶联抗生物素蛋白进行检测,对斑纹电鳐的电器官进行了电镜研究。用修饰后的毒素使电器官碎片中毒后,发现金标记物与神经末梢的突触前质膜和突触小泡膜相关。此外,使用复型染色标记断裂技术分析了从斑纹电鳐电器官分离的突触体膜上生物素化肉毒杆菌毒素结合位点的分布及其与膜内颗粒的关系。结果发现该毒素从未与膜内颗粒相关联。