Narayanan R, Srinivasan A, Aaronson S A
Virology. 1984 Aug;137(1):32-40. doi: 10.1016/0042-6822(84)90005-9.
The role of long terminal repeat (LTR) sequences in the efficient expression of Moloney murine sarcoma virus (MSV-124) transforming gene function was investigated. Recombinant plasmids containing a single LTR positioned 3' of v-mos were subjected to sequential deletions, and the relative transforming efficiency of these recombinants was analyzed in the NIH/3T3 transfection assay. Recombinants lacking CAAT, TATA, and poly(A) signals within the LTR were able to transform with an efficiency comparable to that of the wild-type MSV-124 genome. Deletion of one of the two 74-bp tandem repeat units within the LTR did not abolish v-mos gene function, whereas removal of both 74-bp repeat units completely eliminated transforming activity. The addition of a fragment containing only a single 74-bp unit and 29-bp downstream sequences derived from the LTR to a position 3' of v-mos led to efficient activation of v-mos transforming function. Residual potentiating activity for v-mos expression was retained even when the distance between v-mos and the 3' LTR was increased by several kilobase pairs. All these findings are consistent with the concept that the potentiating action of the LTR in its 3' position is due to activator/enhancer sequences localized to one of its 74-bp repeats. A permuted MSV-124 molecule, whose single LTR was localized 5' of v-mos, was very inefficient at transformation. However, its transforming activity could be increased by approximately 1000-fold by tandemization of the molecule.(ABSTRACT TRUNCATED AT 250 WORDS)
研究了长末端重复序列(LTR)在莫洛尼氏鼠肉瘤病毒(MSV-124)转化基因功能高效表达中的作用。将含有位于v-mos 3'端的单个LTR的重组质粒进行连续缺失,并在NIH/3T3转染试验中分析这些重组体的相对转化效率。LTR内缺乏CAAT、TATA和聚腺苷酸信号的重组体能够以与野生型MSV-124基因组相当的效率进行转化。LTR内两个74bp串联重复单元中的一个缺失并不消除v-mos基因功能,而去除两个74bp重复单元则完全消除转化活性。将仅包含单个74bp单元和来自LTR的29bp下游序列的片段添加到v-mos的3'位置导致v-mos转化功能的有效激活。即使v-mos与3'LTR之间的距离增加几千个碱基对,仍保留了对v-mos表达的残余增强活性。所有这些发现都与以下概念一致,即LTR在其3'位置的增强作用是由于定位于其74bp重复序列之一的激活剂/增强子序列。一种单个LTR位于v-mos 5'端的重排MSV-124分子在转化方面效率非常低。然而,通过分子串联,其转化活性可提高约1千倍。(摘要截断于250字)