Gutierrez C, Ardourel M, Bremer E, Middendorf A, Boos W, Ehmann U
Centre de Recherche de Biochimie et de Genetique Cellulaire du C.N.R.S., Toulouse, France.
Mol Gen Genet. 1989 Jun;217(2-3):347-54. doi: 10.1007/BF02464903.
The treA gene of Escherichia coli K12 codes for a periplasmic trehalase that is induced by growth at high osmolarity. The position of treA within a cloned chromosomal DNA fragment was identified by subcloning of restriction fragments and analysis of the gene product in minicells. The nucleotide sequence of the treA coding region as well as its upstream control region was determined. The treA gene consists of 1695 bp encoding 565 amino acids. The amino-terminus of the mature trehalase was found to begin with the amino acid Glu at position 31 of the open reading frame. The first 30 amino acids resemble a typical signal sequence, consistent with trehalase being a secreted periplasmic enzyme. Two previously isolated phoA fusions to the osmA gene were transferred by homologous recombination on to a treA-containing plasmid and found to be within treA. Analysis of the hybrid genes and their gene products aided the localization of treA and the determination of its direction of transcription within the cloned chromosomal segment. The treA-phoA fusions encoded hybrid proteins which could be found in the periplasm. We found that at high osmolarity the normal pathway for the uptake and utilization of trehalose is blocked. Therefore, the function of the periplasmic trehalase is to provide the cell with the ability to utilize trehalose at high osmolarity by splitting it into glucose molecules that can subsequently be taken up by the phosphotransferase-mediated uptake system.
大肠杆菌K12的treA基因编码一种周质海藻糖酶,该酶在高渗透压下生长时被诱导产生。通过对限制性片段进行亚克隆并在小细胞中分析基因产物,确定了treA在克隆的染色体DNA片段中的位置。测定了treA编码区及其上游控制区的核苷酸序列。treA基因由1695个碱基对组成,编码565个氨基酸。发现成熟海藻糖酶的氨基末端从开放阅读框第31位的谷氨酸开始。前30个氨基酸类似于典型的信号序列,这与海藻糖酶是一种分泌型周质酶一致。通过同源重组将两个先前分离的与osmA基因的phoA融合体转移到含有treA的质粒上,发现它们位于treA内。对杂交基因及其基因产物的分析有助于treA的定位及其在克隆的染色体片段中转录方向的确定。treA-phoA融合体编码的杂交蛋白可在周质中找到。我们发现,在高渗透压下,海藻糖摄取和利用的正常途径被阻断。因此,周质海藻糖酶的功能是通过将海藻糖分解为葡萄糖分子,使细胞能够在高渗透压下利用海藻糖,随后葡萄糖分子可通过磷酸转移酶介导的摄取系统被摄取。