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用含有Eco.gpt基因作为选择标记的各种载体对畸胎癌干细胞和成纤维细胞进行转化。

Transformation of teratocarcinoma stem cells and fibroblasts with various vectors containing the Eco.gpt gene as a selection marker.

作者信息

Thillet J, Kunst F, Lasserre C, Bucchini D, Pictet R, Jami J

出版信息

Exp Cell Res. 1984 Apr;151(2):494-501. doi: 10.1016/0014-4827(84)90398-7.

Abstract

Eco.gpt, which codes for xanthine guanine phosphoribosyltransferase (XGPRT), when placed under the control of SV40 early genes regulating sequences (pSV2gpt) selects transformed teratocarcinoma cells with a low efficiency. The SV40 promoter may not function efficiently in teratocarcinoma stem cells, as suggested by the fact that such cells do not support SV40 T antigen expression. We have tested whether one could change the efficiency of gpt as a dominant selective marker in transformation by several operations. (1) Deletion of 121 base pairs (bp) upstream the bacterial coding sequence gpt (pQS14) did not make any difference. (2) Replacement of the SV40 regulating sequences by the HSV tk regulating sequences (pQS15) resulted in ten times fewer transformants with PCC4 teratocarcinoma cells as well as with L cells. No XGPRT activity was detectable in cultures 48 h after transfection. (3) Reintroduction of the PvuII-HindIII SV40 fragment (which contains an enhancing sequence together with the origin of replication and the early promoter of the virus) into the pQS15 vector, either in 5' or 3' from tk-gpt composite gene (pQS20 and pQS22) allows selection of ten to twenty times more transfected PCC4 or L cells colonies and restores transient XGPRT activity upon transfection. Whatever the vector used, the transformation frequency of PCC4 teratocarcinoma cells remains ten times lower than that of L cells. It appears that the presence of the SV40 PvuII-HindIII fragment in the vector increases cell transformation even with PCC4 cells and that the low frequency obtained with pSV2pgt is likely not due to the use of the SV40 early promoter.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

编码黄嘌呤鸟嘌呤磷酸核糖转移酶(XGPRT)的Eco.gpt,当置于调控SV40早期基因的序列(pSV2gpt)控制之下时,以低效率筛选转化的畸胎瘤细胞。SV40启动子在畸胎瘤干细胞中可能无法有效发挥作用,因为此类细胞不支持SV40 T抗原表达这一事实表明了这一点。我们测试了是否可以通过几种操作来改变gpt作为转化中显性选择标记的效率。(1)在细菌编码序列gpt(pQS14)上游缺失121个碱基对(bp)没有产生任何差异。(2)用单纯疱疹病毒胸苷激酶(HSV tk)调控序列替换SV40调控序列(pQS15),导致PCC4畸胎瘤细胞以及L细胞的转化子减少了十倍。转染后48小时的培养物中未检测到XGPRT活性。(3)将PvuII - HindIII SV40片段(其包含一个增强序列以及病毒的复制起点和早期启动子)重新引入pQS15载体,无论是在tk - gpt复合基因的5'端还是3'端(pQS20和pQS22),都能筛选出比转染的PCC4或L细胞集落多十到二十倍的细胞,并在转染后恢复短暂的XGPRT活性。无论使用何种载体,PCC4畸胎瘤细胞的转化频率仍比L细胞低十倍。似乎载体中SV40 PvuII - HindIII片段的存在即使对于PCC4细胞也能增加细胞转化,并且用pSV2pgt获得的低频可能不是由于使用了SV40早期启动子。(摘要截断于250字)

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