Höltje J V, Kopp U, Ursinus A, Wiedemann B
Max-Planck-Institut für Entwicklungsbiologie, Abteilung Biochemie, Tübingen, FRG.
FEMS Microbiol Lett. 1994 Sep 15;122(1-2):159-64. doi: 10.1111/j.1574-6968.1994.tb07159.x.
Construction of a malE-ampD gene fusion allowed purification of biologically active fusion protein by affinity chromatography. The cloned malE-ampD gene fusion complemented a chromosomal ampD mutation. Purified MalE-AmpD fusion protein was found to have murein amidase activity with a pronounced specificity for 1,6-anhydromuropeptides, the characteristic murein turnover products in Escherichia coli. Being a N-acetyl-anhydromuranmyl-L-alanine amidase AmpD is likely to be involved in recycling of the turnover products. It is suggested that the negative regulatory effect of AmpD is due to the hydrolysis of anhydro-muropeptides which may function as signals for beta-lactamase induction.
构建malE-ampD基因融合体可通过亲和层析法纯化具有生物活性的融合蛋白。克隆的malE-ampD基因融合体可弥补染色体ampD突变。纯化的MalE-AmpD融合蛋白被发现具有胞壁质酰胺酶活性,对1,6-脱水胞壁肽具有明显的特异性,1,6-脱水胞壁肽是大肠杆菌中典型的胞壁质周转产物。作为一种N-乙酰-脱水胞壁酰-L-丙氨酸酰胺酶,AmpD可能参与周转产物的循环利用。有人提出,AmpD的负调控作用是由于脱水胞壁肽的水解,而脱水胞壁肽可能作为β-内酰胺酶诱导的信号。