Fulton R, van Ness B
Department of Laboratory Medicine and Pathology, University of Minnesota, Minneapolis 55455.
Nucleic Acids Res. 1994 Oct 11;22(20):4216-23. doi: 10.1093/nar/22.20.4216.
We have examined the interactions of the enhancers of the kappa immunoglobulin light chain gene as well as the interactions of the intron, mu, and 3' alpha enhancers of the heavy chain locus in mouse. We have observed that each of the kappa enhancers is very weak in comparison with the heavy chain intron enhancer. The mouse heavy chain 3' alpha enhancer is relatively weak as well. However, two kappa enhancers together synergistically activate transcription of a luciferase reporter gene to a level that is roughly equivalent to the heavy chain mu enhancer. Additionally, dimerization of either kappa enhancer results in synergistic increases in transcription. This property of synergism appears to be confined to the enhancers of the kappa locus, as addition of the 3' alpha E to mu E containing constructs increases transcription only modestly, and neither heavy chain enhancer synergizes when dimerized. We have gone on to characterize some of the minimal requirements for synergism between the kappa enhancers and find that the KB and E2 sites are required, but not the E3 site. The implications of these results for the coordinate regulation of the heavy and light chain transcription are discussed.
我们研究了小鼠κ免疫球蛋白轻链基因增强子之间的相互作用,以及重链基因座的内含子、μ和3'α增强子之间的相互作用。我们观察到,与重链内含子增强子相比,每个κ增强子都非常弱。小鼠重链3'α增强子也相对较弱。然而,两个κ增强子共同协同激活荧光素酶报告基因的转录,使其达到大致相当于重链μ增强子的水平。此外,任一κ增强子的二聚化都会导致转录协同增加。这种协同特性似乎仅限于κ基因座的增强子,因为将3'αE添加到含μE的构建体中只会适度增加转录,并且两个重链增强子二聚化时都不会产生协同作用。我们继续表征κ增强子之间协同作用的一些最低要求,发现需要KB和E2位点,但不需要E3位点。讨论了这些结果对重链和轻链转录协同调控的意义。