首页> 外文期刊>Journal of bacteriology >MalI, a novel protein involved in regulation of the maltose system of Escherichia coli, is highly homologous to the repressor proteins GalR, CytR, and LacI.
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MalI, a novel protein involved in regulation of the maltose system of Escherichia coli, is highly homologous to the repressor proteins GalR, CytR, and LacI.

机译:MalI是一种涉及大肠杆菌麦芽糖系统调控的新型蛋白,与阻遏蛋白GalR,CytR和LacI高度同源。

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The maltose regulon of Escherichia coli comprises several operons that are under common regulatory control of the MalT activator protein. Five mal genes, organized in two divergent operons, code for a binding-protein-dependent transport system specific for maltose and maltodextrins. MalK, one of the subunits of this transport system, not only is essential for transport but also plays a role in regulation. Mutations abolishing MalK function not only result in inability to transport maltose but also cause constitutive expression of the maltose regulon. For this constitutivity to be exerted, the function of an additional gene product, MalI, is necessary. Using the constitutive expression of a malK-lacZ fusion as a signal, we cloned the malI gene, expressed it in minicells, and determined its DNA sequence. The sequence predicted a protein of 34,729 molecular weight, in agreement with the apparent molecular weight of the protein (35,000) when expressed in minicells and analyzed by polyacrylamide gel electrophoresis and autoradiography. MalI exhibited high homology to the repressor proteins GalR, CytR, and LacI. When the amino acid sequences were appropriately aligned, MalI showed 28% identity to GalR, 21% to CytR, and 24% to LacI. Including conservative amino acid exchanges, these numbers increased to 69, 56, and 58%, respectively. The regions of high homology were clustered in particular at the N-terminal portion of the protein that includes the helix-turn-helix motif thought to be involved in DNA binding. The protein contained a short stretch of 30 amino acids that was surprisingly homologous to a sequence in MalT. The amino-terminal half of the protein exhibited significant homology with MalK. The transcriptional start of malI was determined by reverse transcriptase and by S1 nuclease mapping. We found a possible binding site for cyclic AMP receptor protein in the promoter region of malI as well as two perfect direct repeats of 14 base pairs with twofold symmetry indicating their possible role as operator sites. Upstream to malI we observed a divergent open reading frame that extended to the end of the sequenced DNA.
机译:大肠杆菌的麦芽糖调节子包含几个操纵子,这些操纵子受MalT激活蛋白的共同调控。在两个不同的操纵子中组织的五个mal基因,编码了对麦芽糖和麦芽糖糊精具有特异性的结合蛋白依赖性转运系统。 MalK是该运输系统的子单元之一,不仅对运输至关重要,而且在调节中也发挥着作用。取消MalK功能的突变不仅导致无法运输麦芽糖,而且还导致麦芽糖调节子的组成型表达。为了发挥这种构成作用,必须具有其他基因产物MalI的功能。使用malK-lacZ融合蛋白的组成型表达作为信号,我们克隆了malI基因,使其在小细胞中表达,并确定了其DNA序列。该序列预测的蛋白质分子量为34,729,与在小细胞中表达并通过聚丙烯酰胺凝胶电泳和放射自显影分析的表观分子量(35,000)一致。 MalI与阻遏蛋白GalR,CytR和LacI具有高度同源性。当氨基酸序列适当比对时,MalI与GalR的同源性为28%,与CytR同源的为21%,与LacI同源的为24%。包括保守氨基酸交换在内,这些数字分别增加到69%,56%和58%。高度同源的区域特别聚集在蛋白质的N末端部分,该蛋白质包括被认为与DNA结合有关的螺旋-转-螺旋基序。该蛋白质包含30个氨基酸的短片段,该片段与MalT中的序列令人惊讶地同源。蛋白质的氨基末端一半与MalK表现出显着的同源性。 malI的转录起点是通过逆转录酶和S1核酸酶作图确定的。我们在malI的启动子区域中发现了环状AMP受体蛋白的可能结合位点,以及14个碱基对的两个完美的直接重复序列(具有双重对称性),表明它们可能充当操纵位点。在malI上游,我们观察到一个不同的开放阅读框,延伸至测序DNA的末端。

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