Wefald F C, Devlin B H, Williams R S
Department of Medicine, Duke University Medical Center, Durham, North Carolina 27710.
Nature. 1990 Mar 15;344(6263):260-2. doi: 10.1038/344260a0.
A regulatory element upstream of the human myoglobin gene functions as a muscle-specific enhancer (MSE) in conjunction with core promoter elements of the myoglobin gene, but not in combination with the simian virus 40 (SV40) early promoter. These two promoters differ in the sequences of their 'TATA boxes': for the myoglobin gene, the sequence is TATAAAA, whereas for SV40, the sequence is TATTTAT. We have now tested the hypothesis that this sequence difference is responsible for the differential response of the promoters to the MSE. We found that when the TATA box sequence of the myoglobin promoter was changed to that of the SV40 promoter, responsiveness to the MSE was abolished; conversely, when the SV40 TATA box sequence was changed to that of the myoglobin promoter, the promoter became responsive to the MSE. We conclude that mammalian TATA-box elements are functionally heterogeneous, and suggest that this heterogeneity reflects differential interactions with distinctive TATA box-binding factors, only some of which can act cooperatively with MSE-binding proteins to generate an active transcriptional complex.
人类肌红蛋白基因上游的一个调控元件,与肌红蛋白基因的核心启动子元件共同作用时,可作为肌肉特异性增强子(MSE)发挥功能,但与猿猴病毒40(SV40)早期启动子结合时则不然。这两种启动子的“TATA框”序列不同:肌红蛋白基因的序列是TATAAAA,而SV40的序列是TATTTAT。我们现在检验了这样一个假说,即这种序列差异导致了启动子对MSE的不同反应。我们发现,当肌红蛋白启动子的TATA框序列变为SV40启动子的序列时,对MSE的反应性就消失了;相反,当SV40的TATA框序列变为肌红蛋白启动子的序列时,该启动子就对MSE有了反应性。我们得出结论,哺乳动物的TATA框元件在功能上是异质的,并表明这种异质性反映了与不同的TATA框结合因子的差异相互作用,其中只有一些能与MSE结合蛋白协同作用以形成一个活性转录复合体。