Liang Q, He J S, Fulco A J
Department of Biological Chemistry, School of Medicine, University of California, Los Angeles 90024-1737.
J Biol Chem. 1995 Mar 3;270(9):4438-50. doi: 10.1074/jbc.270.9.4438.
In a previous publication (He, J.-S., and Fulco, A. J. (1991) J. Biol. Chem. 266, 7864-7869), we reported that a 15-17-base pair DNA sequence (designated a Barbie box element) in the 5'-regulatory regions of cytochrome P450BM-1 and P450BM-3 genes from Bacillus megaterium was recognized by a barbiturate-regulated protein. It is now recognized that essentially all eukaryotic and prokaryotic genes whose 5'-flanking regions are known and that encode barbiturate-inducible proteins contain the Barbie box element. A 4-base pair sequence (AAAG) is found in the same relative position in all Barbie box elements. In B. megaterium, mutation of the Barbie box located in the P450BM-1 gene leads to the constitutive synthesis of cytochrome P450BM-1 and a 10-fold increase of expression of Bm1P1, a small gene located upstream of the P450BM-1 gene, that encodes a putative regulatory protein. Mutation of the P450BM-3 Barbie box significantly increased the expression of both P450BM-3 and Bm3P1 (another small gene located upstream of the P450BM-3 gene that encodes a second putative regulatory protein) in response to pentobarbital induction but left the basal levels unaffected. In gel mobility shift assays, Bm3R1, a repressor of the P450BM-3 gene, was found to specifically interact with the Barbie box sequences of the B. megaterium P450 genes. Mutated Barbie boxes showed a decreased binding affinity for Bm3R1 compared to their wild type (unmutated) counterparts. Barbie box sequences were also shown to specifically interact with putative positive regulatory factors of B. megaterium cells. These putative positive factors were induced by pentobarbital and were also present at high levels during late stationary phase of B. megaterium cell cultures grown in the absence of barbiturates. The mutated Barbie box sequences had greater binding affinity for these positive factors than did unmutated Barbie box sequences. DNase I footprinting analysis of the 5'-flanking region of the P450BM-1 gene revealed that these positive factors protected a segment of DNA covering a portion of the Barbie box sequence and a small flanking region. Similar footprinting experiments with the 5'-flanking region of the P450BM-3 gene failed, however, to unambiguously reveal protected sequences in the Barbie box region. The evidence suggests that the positive factors and Bm3R1 compete with each other for binding to the Barbie box region, especially in the 5'-flanking region of the P450BM-1 gene, and for putative roles in the regulation of transcription from the B. megaterium P450 genes.(ABSTRACT TRUNCATED AT 400 WORDS)
在之前的一篇论文中(何,J.-S.,和富尔科,A. J.(1991年)《生物化学杂志》266卷,7864 - 7869页),我们报道了巨大芽孢杆菌细胞色素P450BM - 1和P450BM - 3基因5' - 调控区中一段15 - 17个碱基对的DNA序列(命名为巴比妥盒元件)可被一种巴比妥酸盐调控蛋白识别。现在已经认识到,基本上所有5' - 侧翼区已知且编码巴比妥酸盐诱导型蛋白的真核和原核基因都含有巴比妥盒元件。在所有巴比妥盒元件的相同相对位置都发现了一个4碱基对序列(AAAG)。在巨大芽孢杆菌中,位于P450BM - 1基因中的巴比妥盒发生突变会导致细胞色素P450BM - 1的组成型合成,并且位于P450BM - 1基因上游的一个小基因Bm1P1(编码一种假定的调控蛋白)的表达增加10倍。P450BM - 3巴比妥盒的突变显著增加了P450BM - 3和Bm3P1(位于P450BM - 3基因上游的另一个小基因,编码第二种假定的调控蛋白)对戊巴比妥诱导的响应表达,但对基础水平没有影响。在凝胶迁移率变动分析中,发现P450BM - 3基因的一种阻遏蛋白Bm3R1与巨大芽孢杆菌P450基因的巴比妥盒序列特异性相互作用。与野生型(未突变)对应序列相比,突变的巴比妥盒对Bm3R1的结合亲和力降低。巴比妥盒序列还显示与巨大芽孢杆菌细胞的假定正调控因子特异性相互作用。这些假定的正调控因子可被戊巴比妥诱导,并且在无巴比妥酸盐培养的巨大芽孢杆菌细胞培养物的稳定期末期也大量存在。与未突变的巴比妥盒序列相比,突变的巴比妥盒序列对这些正调控因子的结合亲和力更高。对P450BM - 1基因5' - 侧翼区的DNase I足迹分析表明,这些正调控因子保护了一段覆盖部分巴比妥盒序列和一小段侧翼区的DNA片段。然而,对P450BM - 3基因5' - 侧翼区进行类似的足迹实验未能明确揭示巴比妥盒区域的受保护序列。证据表明,正调控因子和Bm3R1相互竞争结合巴比妥盒区域,特别是在P450BM - 1基因的5' - 侧翼区,并且在巨大芽孢杆菌P450基因转录调控中发挥假定作用。(摘要截短至400字)