Tan Shuhua, Wu Wutong, Liu Jingjing, Kong Yi, Pu Yinghui, Yuan Riying
School of Biopharmaceutics, China Pharmaceutical University, 24 Tongjia Street, Nanjing 210009, Jiangsu Province, People's Republic of China.
Protein Expr Purif. 2002 Aug;25(3):430-6. doi: 10.1016/s1046-5928(02)00023-2.
One of the hirudin variants HV3 was efficiently expressed in Escherichia coli using the L-asparaginase II signal sequence and the product was secreted into the culture medium. For the secretory manufacture of HV3, the L-asparaginase II signal sequence containing a single NheI restriction site at its 3' end was designed using the degenerate codons and PCR-amplified from E. coli chromosomal DNA. The synthetic HV3 coding sequence was fused to the signal sequence in-frame by its 5' NheI restriction site. The above signal-HV3 fusion gene was inserted into an expression vector pTA, which was derived from pkk223-3 such that its expression was under the control of the tac promotor. The resulting HV3 secretion expression vector pTASH thus constructed was introduced into an E. coli host cell AS1.357 with high L-asparaginase II producing level. After inducing with IPTG, the expression product was efficiently secreted into the culture medium and shake-flask culturing gave a yield of approximately 5 x 10(5)ATU/L (approximately 60mg/L). The secreted HV3 was easily purified from culture supernatant using ultrafiltration, ion-exchange column chromatography, and FPLC reverse-phase chromatography. The purified rHV3 from the culture supernatant had the expected N-terminal amino sequence and strong antithrombin activity, suggesting that the signal sequence was completely removed and the product was processed accurately during the secretion process.
水蛭素变体之一HV3利用L-天冬酰胺酶II信号序列在大肠杆菌中高效表达,产物分泌到培养基中。为了分泌生产HV3,使用简并密码子设计了在其3'端含有单个NheI限制性位点的L-天冬酰胺酶II信号序列,并从大肠杆菌染色体DNA中进行PCR扩增。合成的HV3编码序列通过其5' NheI限制性位点与信号序列读框融合。将上述信号-HV3融合基因插入到由pkk223-3衍生而来的表达载体pTA中,使其表达受tac启动子控制。如此构建的所得HV3分泌表达载体pTASH被导入具有高L-天冬酰胺酶II产生水平的大肠杆菌宿主细胞AS1.357中。用IPTG诱导后,表达产物高效分泌到培养基中,摇瓶培养产量约为5×10(5)ATU/L(约60mg/L)。分泌的HV3使用超滤、离子交换柱色谱和FPLC反相色谱从培养上清液中易于纯化。从培养上清液中纯化的rHV3具有预期的N端氨基酸序列和强抗凝血酶活性,表明信号序列被完全去除且产物在分泌过程中被准确加工。