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蜡样芽孢杆菌孢子和营养细胞中1,6-二磷酸果糖醛缩酶的特性

Properties of fructose 1,6-diphosphate aldolases from spores and vegetative cells of Bacillus cereus.

作者信息

Sadoff H L, Hitchins A D, Celikkol E

出版信息

J Bacteriol. 1969 Jun;98(3):1208-18. doi: 10.1128/jb.98.3.1208-1218.1969.

Abstract

Fructose 1,6-diphosphate aldolase from cells of Bacillus cereus appears to be typical Class II aldolase as judged by its functional and physical properties. Spore and vegetative cell aldolase had similar enzymatic, immunochemical, and heat resistance properties in the absence of calcium, but they differed in their thermal stabilities in the presence of calcium, their Stokes' radii, their mobility in acrylamide gel electrophoresis, and their molecular weights. The pH optimum for both enzymes was 8.5, and their K(m) with respect to substrate was 2 x 10(-3)m. Highly purified spore and vegetative cell aldolases were both heat labile with half-lives of 4 min at 53 C and pH 6.4. In the presence of 3 x 10(-2)m solution of calcium ions, the stability of the spore protein increased 12-fold but the vegetative form became more heat labile. The enhanced stability of the spore aldolase was not diminished by dialysis or gel filtration but was lost after chromatography on diethylaminoethyl cellulose at pH 7.4. Aldolase from vegetative cells exists in an equilibrium mixture of two molecular weights, 115,000 and 79,000 in the approximate ratio of 1:4, respectively. The molecular weight of spore aldolase is 44,000. Spore aldolase was more mobile during electrophoresis than its vegetative cell counterpart because of its smaller size.

摘要

蜡样芽孢杆菌细胞中的1,6-二磷酸果糖醛缩酶,从其功能和物理性质判断,似乎是典型的II类醛缩酶。在没有钙的情况下,芽孢和营养细胞醛缩酶具有相似的酶学、免疫化学和耐热性,但在有钙存在时,它们在热稳定性、斯托克斯半径、在丙烯酰胺凝胶电泳中的迁移率以及分子量方面存在差异。两种酶的最适pH均为8.5,它们对底物的K(m)为2×10(-3)m。高度纯化的芽孢和营养细胞醛缩酶都不耐热,在53℃和pH 6.4条件下的半衰期为4分钟。在3×10(-2)m钙离子溶液存在下,芽孢蛋白的稳定性增加了12倍,但营养型变得更不耐热。芽孢醛缩酶稳定性的增强不会因透析或凝胶过滤而降低,但在pH 7.4条件下在二乙氨基乙基纤维素上进行层析后会丧失。营养细胞中的醛缩酶以两种分子量的平衡混合物形式存在,分别为115,000和79,000,比例约为1:4。芽孢醛缩酶的分子量为44,000。由于芽孢醛缩酶尺寸较小,在电泳过程中比其营养细胞对应物迁移得更快。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88e0/315315/98f6df7f2071/jbacter00585-0393-a.jpg

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