Shibatani T, Kakimoto T, Chibata I
Appl Environ Microbiol. 1979 Sep;38(3):359-64. doi: 10.1128/aem.38.3.359-364.1979.
The formation of L-asparate beta-decarboxylase by Pseudomonas dacunhae was compared on media containing a variety of organic acids and amino acids as a carbon source. Although the enzyme was formed constitutively when the organism was grown on basal medium or on that containing tricarboxylic acid cycle intermediates, it was induced twofold by L-glutamate and repressed one-tenth by L-serine. L-Glutamine, L-proline, L-leucine, glycine, and L-threonine also showed induction effects lower than that of L-glutamate. L-Glutamate derepressed the serine effect. This glutamate effect was observed effect was observed with other microoganisms, e.g., Achromobacter pestifer and Achromobacter liquidum. Since the intermediates from L-glutamate metabolism had no effect, this induction effect was specific to L-glutamate. The formation of some glutamate-related enzymes was measured and is discussed in relation to the formation of L-asparate beta-decarboxylase. L-Asparate beta-decarboxylase was purified to an electrophoretically homogenous state from L-glutamate-grown cells of P. dacunhae, and some properties were compared with those of the enzyme from fumarate-grown cells. The two enzymes were identical in disc electrophoresis, molecular weight, and some enzymatic properties. The industrial production of L-alanine from L-aspartic acid acid was improved by using the culture broth with highly induced L-asparate beta-decarboxylase (9.4 U/ml of broth).
比较了在含有多种有机酸和氨基酸作为碳源的培养基上,达 Cunha 假单胞菌形成 L-天冬氨酸β-脱羧酶的情况。虽然当该生物体在基础培养基或含有三羧酸循环中间产物的培养基上生长时,该酶是组成型形成的,但它被 L-谷氨酸诱导了两倍,被 L-丝氨酸抑制了十分之一。L-谷氨酰胺、L-脯氨酸、L-亮氨酸、甘氨酸和 L-苏氨酸也显示出比 L-谷氨酸低的诱导作用。L-谷氨酸解除了丝氨酸的抑制作用。在其他微生物如有害无色杆菌和液化无色杆菌中也观察到了这种谷氨酸效应。由于 L-谷氨酸代谢的中间产物没有作用,这种诱导效应是 L-谷氨酸特有的。测定了一些与谷氨酸相关的酶的形成,并结合 L-天冬氨酸β-脱羧酶的形成进行了讨论。从在 L-谷氨酸培养基上生长的达 Cunha 假单胞菌细胞中,将 L-天冬氨酸β-脱羧酶纯化到电泳纯状态,并将其一些性质与在富马酸培养基上生长的细胞中的酶的性质进行了比较。这两种酶在圆盘电泳、分子量和一些酶学性质方面是相同的。通过使用具有高诱导水平的 L-天冬氨酸β-脱羧酶(9.4 U/ml 培养液)的培养液,提高了从 L-天冬氨酸工业生产 L-丙氨酸的效率。