Uejima Hajime, Nakayama Tetsuo, Komase Katsuhiro
Laboratory of Viral Infection I, Kitasato Institute for Life Sciences, Kitasato University, Minato-ku, Tokyo, Japan.
Vaccine. 2006 Feb 13;24(7):931-6. doi: 10.1016/j.vaccine.2005.08.082. Epub 2005 Sep 7.
Objective of this study is to evaluate the feasibility of measles vaccine production in Vero cell culture. We constructed the full-length cDNA, pIC-MVAIK-F278Leu (small plaque-type) and pIC-MVAIK-F278Phe (large plaque-type) from the AIK-C measles vaccine strain attenuated from the Edmonston wild-type. MVAIK-S/B2 was rescued from pIC-MVAIK-F278Leu after two passages in B95a cells and MVAIK-SL/B2V1 was obtained through large plaque cloning in Vero cells. MVAIK-SL/B2V8 was obtained after eight passages in Vero cells. It produced large plaques in Vero cells, grew well at 39 degrees C, and thus the characteristics of the AIK-C vaccine strain were lost. Thirteen amino acid changes were observed; one in the N, two in the P, one in the C, three in the F, one in the H, and five in the L protein regions. Twelve of these changes excluding one in the L gene were back mutated to the Edmonston strain. Change from Leu to Phe at position 278 of the F protein was an early event during adaptation to Vero cells and the P gene was back-mutated to the Edmonston wild-type. As for the control, MVAIK-L/B9 strain was obtained after passages in B95a cells from pIC-MVAIK-F278Phe (large plaque-type). It maintained the same temperature sensitivity as the AIK-C vaccine strain and only four amino acid changes, one in the N and three in the L protein region, were observed without any mutations in the P, C, M, F, and H genes. The passage of the measles vaccine AIK-C strain in Vero cells lost the characteristics of small plaque inducibility and temperature sensitivity (ts) phenotype.
本研究的目的是评估在Vero细胞培养中生产麻疹疫苗的可行性。我们从Edmonston野生型减毒的AIK-C麻疹疫苗株构建了全长cDNA,即pIC-MVAIK-F278Leu(小蚀斑型)和pIC-MVAIK-F278Phe(大蚀斑型)。MVAIK-S/B2在B95a细胞中传代两次后从pIC-MVAIK-F278Leu中拯救出来,MVAIK-SL/B2V1通过在Vero细胞中进行大蚀斑克隆获得。MVAIK-SL/B2V8在Vero细胞中传代八次后获得。它在Vero细胞中产生大蚀斑,在39℃生长良好,因此失去了AIK-C疫苗株的特性。观察到13个氨基酸变化;N蛋白区域有1个,P蛋白区域有2个,C蛋白区域有1个,F蛋白区域有3个,H蛋白区域有1个,L蛋白区域有5个。除L基因中的1个变化外,这些变化中的12个反向突变为Edmonston株。F蛋白第278位从亮氨酸变为苯丙氨酸是适应Vero细胞过程中的早期事件,P基因反向突变为Edmonston野生型。作为对照,MVAIK-L/B9株在B95a细胞中传代后从pIC-MVAIK-F278Phe(大蚀斑型)获得。它保持了与AIK-C疫苗株相同的温度敏感性,仅观察到4个氨基酸变化,N蛋白区域有1个,L蛋白区域有3个,而P、C、M、F和H基因没有任何突变。麻疹疫苗AIK-C株在Vero细胞中的传代失去了小蚀斑诱导性和温度敏感性(ts)表型的特性。