Gherardini F, Babcock M, Salyers A A
J Bacteriol. 1985 Feb;161(2):500-6. doi: 10.1128/jb.161.2.500-506.1985.
When Bacteroides ovatus is grown on guar gum, a galactomannan, it produces alpha-galactosidase I which is different from alpha-galactosidase II which it produces when grown on galactose, melibiose, raffinose, or stachyose. We have purified both of these enzymes to apparent homogeneity. Both enzymes appear to be trimers and have similar pH optima (5.9 to 6.4 for alpha-galactosidase I, 6.3 to 6.5 for alpha-galactosidase II). However, alpha-galactosidase I has a pI of 5.6 and a monomeric molecular weight of 85,000, whereas alpha-galactosidase II has a pI of 6.9 and a monomeric molecular weight of 80,500. alpha-Galactosidase I has a lower affinity for melibiose, raffinose, and stachyose (Km values of 20.8, 98.1, and 8.5 mM, respectively) than does alpha-galactosidase II (Km values of 2.3, 5.9, and 0.3 mM, respectively). Neither enzyme was able to remove galactose residues from intact guar gum, but both were capable of removing galactose residues from guar gum which had been degraded into large fragments by mannanase. The increase in specific activity of alpha-galactosidase which was associated with growth on guar gum was due to an increase in the specific activity of enzyme I. Low, constitutive levels of enzyme II also were produced. By contrast, enzyme II was the only alpha-galactosidase that was detectable in bacteria which had been grown on galactose, melibiose, raffinose, or stachyose.
卵形拟杆菌在半乳甘露聚糖瓜尔豆胶上生长时,会产生α-半乳糖苷酶I,该酶与它在半乳糖、蜜二糖、棉子糖或水苏糖上生长时产生的α-半乳糖苷酶II不同。我们已将这两种酶纯化至表观均一。两种酶似乎都是三聚体,且具有相似的最适pH值(α-半乳糖苷酶I为5.9至6.4,α-半乳糖苷酶II为6.3至6.5)。然而,α-半乳糖苷酶I的pI为5.6,单体分子量为85,000,而α-半乳糖苷酶II的pI为6.9,单体分子量为80,500。α-半乳糖苷酶I对蜜二糖、棉子糖和水苏糖的亲和力(Km值分别为20.8、98.1和8.5 mM)低于α-半乳糖苷酶II(Km值分别为2.3、5.9和0.3 mM)。两种酶都无法从完整的瓜尔豆胶中去除半乳糖残基,但都能够从已被甘露聚糖酶降解成大片段的瓜尔豆胶中去除半乳糖残基。与在瓜尔豆胶上生长相关的α-半乳糖苷酶比活性的增加是由于酶I比活性的增加。也产生了低水平的组成型酶II。相比之下,酶II是在半乳糖、蜜二糖、棉子糖或水苏糖上生长的细菌中唯一可检测到的α-半乳糖苷酶。