Gopal-Srivastava R, Cvekl A, Piatigorsky J
Laboratory of Molecular and Developmental Biology, National Eye Institute, National Institutes of Health, Bethesda, Maryland 20892-2730, USA.
J Biol Chem. 1996 Sep 20;271(38):23029-36. doi: 10.1074/jbc.271.38.23029.
We have demonstrated previously that a transgene comprising the -164/+44 fragment of the murine alphaB-crystallin gene fused to the bacterial chloramphenicol acetyltransferase (cat) gene is lens-specific in transgenic mice. The -147 to -118 sequence was identified as a lens-specific regulatory region and is called here LSR1 for lens-specific region 1. In the present experiments, a -115/+44-cat transgene was also lens-specific in transgenic mice, although the average activity was 30 times lower than that derived from the -164/+44-cat transgene. The -115/+44 alphaB-crystallin fragment contains a highly conserved region (-78 to -46) termed here LSR2. A -68/+44-cat transgene, in which LSR2 is truncated, was inactive in transgenic mice. DNase I footprinting indicated that LSR1 and LSR2 bind partially purified nuclear proteins from either alphaTN4-1 lens cells or the mouse lens as well as the purified paired domain of Pax-6. Site-specific mutation of LSR1 eliminated both Pax-6 binding and promoter activity of the -164/+44-cat transgene in transgenic mice. Finally antibody/electrophoretic mobility shift assays and cotransfection experiments indicated that Pax-6 can activate the alphaB-crystallin promoter via LSR1 and LSR2. Our data strengthen the idea that Pax-6 has had a major role in recruiting genes for high expression in the lens.
我们先前已证明,一个由小鼠αB-晶状体蛋白基因的-164/+44片段与细菌氯霉素乙酰转移酶(cat)基因融合而成的转基因在转基因小鼠中具有晶状体特异性。-147至-118序列被鉴定为晶状体特异性调控区域,在此称为晶状体特异性区域1(LSR1)。在本实验中,一个-115/+44-cat转基因在转基因小鼠中也具有晶状体特异性,尽管其平均活性比-164/+44-cat转基因低30倍。-115/+44αB-晶状体蛋白片段包含一个高度保守区域(-78至-46),在此称为LSR2。一个-68/+44-cat转基因,其中LSR2被截断,在转基因小鼠中无活性。DNA酶I足迹分析表明,LSR1和LSR2与从αTN4-1晶状体细胞或小鼠晶状体中部分纯化的核蛋白以及纯化的Pax-6配对结构域结合。LSR1的位点特异性突变消除了转基因小鼠中-164/+44-cat转基因的Pax-6结合和启动子活性。最后,抗体/电泳迁移率变动分析和共转染实验表明,Pax-6可通过LSR1和LSR2激活αB-晶状体蛋白启动子。我们的数据强化了这样一种观点,即Pax-6在招募基因以在晶状体中高表达方面发挥了主要作用。