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Characterization of the aes gene of Escherichia coli encoding an enzyme with esterase activity.

机译:大肠杆菌aes基因的表征该基因编码具有酯酶活性的酶。

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摘要

malQ mutants of Escherichia coli lacking amylomaltase cannot grow on maltose. They express the maltose system constitutively and are sensitive to maltose when grown on another carbon source. In an attempt to isolate a multicopy suppressor that would result in growth on maltose, we transformed a malQ mutant with a gene bank of E. coli DNA which had been digested with Sau3a and cloned in pBR322. We screened the transformants on MacConkey maltose plates. A colony was isolated that appeared to be resistant to maltose and was pink on these plates, but it was still unable to grow on minimal medium with maltose as the carbon source. The plasmid was isolated, and the gene causing this phenotype was characterized. The deduced amino acid sequence of the encoded protein shows homology to that of lipases and esterases. We termed the gene aes, for acetyl esterase. Extracts of cells harboring plasmid-encoded aes under its own promoter exhibit a fivefold higher capacity to hydrolyze p-nitrophenyl acetate than do extracts of cells of plasmid-free strains. Similarly, strains harboring plasmid-encoded aes are able to grow on triacetyl glycerol (triacetin) whereas the plasmid-free strains are not. The expression of plasmid-encoded aes resulted in strong repression of the maltose transport genes in malT+ strains (10-fold reduction), but not in a malT(Con) strain which is independent of the inducer. Also, overproduction of MalT counteracted the Aes-dependent repression, indicating a direct interaction between MalT and Aes.
机译:缺少淀粉酶的大肠杆菌malQ突变体不能在麦芽糖上生长。它们组成性表达麦芽糖系统,并且在其他碳源上生长时对麦芽糖敏感。为了分离出能在麦芽糖上生长的多拷贝抑制剂,我们用大肠杆菌DNA基因库转化了malQ突变体,该基因库已被Sau3a消化并克隆到pBR322中。我们在麦康凯麦芽糖平板上筛选了转化子。分离出一个似乎对麦芽糖有抗性的菌落,在这些平板上呈粉红色,但它仍然不能在以麦芽糖为碳源的基本培养基上生长。分离质粒,表征引起该表型的基因。推导的编码蛋白的氨基酸序列显示出与脂肪酶和酯酶的同源性。我们称乙酰基酯酶为基因aes。在其自身的启动子下具有质粒编码的aes的细胞提取物显示的水解对硝基苯乙酸酯的能力比无质粒菌株的细胞提取物高五倍。同样,带有质粒编码aes的菌株能够在三乙酰基甘油(triacetin)上生长,而不含质粒的菌株则不能。质粒编码的aes的表达导致在malT +菌株中强烈抑制麦芽糖转运基因(降低10倍),但在不依赖于诱导剂的malT(Con)菌株中则没有。此外,MalT的过量产生抵消了Aes依赖性抑制,表明MalT和Aes之间存在直接的相互作用。

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