Gao Yan-Ru, Pan Shan-Pei, Xie Qi-Xuan, Xiao Luan-Juan, Ke Qiong, Li Wen-Xing, Shi Wei-Wei
Institute of Reproductive Immunology, Jinan University, Guangzhou 510632, China.
Sheng Wu Gong Cheng Xue Bao. 2006 May;22(3):499-503.
To obtain the recombinant pZP3alpha protein for the study of the contraceptive vaccines, the DNA sequence (446-1423) encoding purified pZP3alpha was inserted into a vector--pPICZalphaA. The recombinant plasmid pPICZalphaA-pZP3alpha was linearized and then transformed into Pichia pastoris GS115 by electroporation. Engineering strains were attained by screening with zeocin and induced to produce rpZP3alpha in high-density fermentation. Then rpZP3alpha was purified by Cu2+ metal affinity column chromatography from the separated and concentrated fermentative supernatants. The purified rpZP3alpha was identified by SDS-PAGE and Western blot, and the quantity, purity and rate of recovery of the rpZP3alpha were analyzed by Quantity One software. One male rabbit was immunized with the Cu-NTA-purified rpZP3alpha. The antibody responses against rpZP3alpha and porcine ZP were detected by ELISA and the indirect immunofluorescence. Engineering strains expressing rpZP3alpha in secretion were constructed. A 46kD component named rpZP3alpha which can react with anti-pZP3 antibody was purified from fermentative supernatants of engineering strains and the average yield of purified rpZP3alpha obtained from fermentative supernatants was 8mg/L. The purity and the rate of recovery were up to 92% and 63% respectively. The anti-rpZP3alpha antiserum was prepared by immunization of a male rabbit with purified rpZP3alpha. This anti-rpZP3alpha antiserum could react with rpZP3alpha and purified pZP3 in ELISA and bind to porcine zona pellucida which produced bright green fluorescence in the indirect immunofluorescence. The rpZP3alpha (46kD) protein could be successfully expressed in the Pichia pastoris expression system. And this protein retained the immunogenic activity of natural pZP3.
为了获得用于避孕疫苗研究的重组pZP3α蛋白,将编码纯化pZP3α的DNA序列(446 - 1423)插入载体pPICZαA中。重组质粒pPICZαA - pZP3α经线性化处理后,通过电穿孔法转化入毕赤酵母GS115。通过用博来霉素筛选获得工程菌株,并在高密度发酵中诱导产生重组pZP3α(rpZP3α)。然后,从分离并浓缩的发酵上清液中通过Cu2 +金属亲和柱层析法纯化rpZP3α。通过SDS - PAGE和蛋白质免疫印迹法鉴定纯化的rpZP3α,并使用Quantity One软件分析rpZP3α的数量、纯度和回收率。用经铜 - 亚氨基三乙酸(Cu - NTA)纯化的rpZP3α免疫一只雄性兔子。通过酶联免疫吸附测定(ELISA)和间接免疫荧光法检测针对rpZP3α和猪透明带(ZP)的抗体反应。构建了分泌表达rpZP3α的工程菌株。从工程菌株的发酵上清液中纯化出一种名为rpZP3α的46kD组分,其能与抗pZP3抗体反应,从发酵上清液中获得的纯化rpZP3α的平均产量为8mg/L。纯度和回收率分别高达92%和63%。用纯化的rpZP3α免疫雄性兔子制备了抗rpZP3α抗血清。该抗rpZP3α抗血清在ELISA中能与rpZP3α和纯化的pZP3反应,并在间接免疫荧光中与猪透明带结合产生亮绿色荧光。rpZP3α(46kD)蛋白能够在毕赤酵母表达系统中成功表达。并且该蛋白保留了天然pZP3的免疫原活性。