Liu X, Xu Y, Jin Q
Children's Hospital, Shanghai Medical University.
Zhonghua Yi Xue Za Zhi. 1996 Jun;76(6):447-50.
To express biological active surfactant protein B(SP-B) and surfactant protein C(SP-C) combined with synthetic phospholipids to make an ideal exogenous pulmonary surfactant (PS) for the treatment of respiratory distress syndrome (RDS) in future.
Prokaryote expression vector pIN-II-ompA2-B-C was established with the cDNA fragments of mature human SP-B and SP-C, then the fusion protein of mature SP-B with SP-C was expressed in E. coli BL21 induced by IPTG. The expression of fusion protein in E. coli was confirmed by Western blot anlaysis. The biological activity of the expressed product was measured by Wilhelmy's surface balance (MTP-2).
The fusion protein of SP-B with SP-C could be expressed in E. coli BL21, and their molecular weight (Mr) was 20000 on gel electrophoresis, but the amount was small. According to the measurement of Wilhelmy's surface balance (MTP-2), the minimal surface tension of expressed protein in E. coli BL21 could be reduced to 0.004 N/m2 and the area of hysteresis loop was relatively large.
The results of the investigation will be a basis to obtain SP-B and SP-C with gene engineering technology and to create a new way for producing ideal exogenous PS.
表达生物活性表面活性蛋白B(SP-B)和表面活性蛋白C(SP-C)并与合成磷脂结合,以期将来制备出理想的外源性肺表面活性物质(PS)用于治疗呼吸窘迫综合征(RDS)。
用成熟人SP-B和SP-C的cDNA片段构建原核表达载体pIN-II-ompA2-B-C,然后在IPTG诱导下于大肠杆菌BL21中表达成熟SP-B与SP-C的融合蛋白。通过蛋白质免疫印迹分析证实融合蛋白在大肠杆菌中的表达。用威尔海姆表面天平(MTP-2)测定表达产物的生物活性。
SP-B与SP-C的融合蛋白能在大肠杆菌BL21中表达,凝胶电泳显示其分子量(Mr)为20000,但表达量较少。根据威尔海姆表面天平(MTP-2)测定,大肠杆菌BL21中表达蛋白的最小表面张力可降至0.004 N/m2,滞后环面积相对较大。
本研究结果将为利用基因工程技术获得SP-B和SP-C以及开创生产理想外源性PS的新途径奠定基础。