Mandels G R, Vitols R
J Bacteriol. 1967 Jan;93(1):159-67. doi: 10.1128/jb.93.1.159-167.1967.
Trehalose is absorbed by two distinct systems-one constitutive, the other induced by turanose and to a lesser extent by nigerose but not by trehalose. The constitutive system is apparently mediated by a surface trehalase; the induced system has the characteristics of a permease. The specificity of the induced system is apparently limited to the alpha glucosyl-glucose or glucosyl-fructose linkage, because absorption of kojibiose, nigerose, maltose, isomaltose, turanose, sucrose, and melezitose, in addition to that of trehalose, was increased. Absorption of beta-linked or of galactose-containing disaccharides was not increased. The constitutive and induced trehalose-absorbing systems differ in their activity, specificity, lability to acid treatment, effects of substrate concentration, and pH optima. Both systems require oxygen, and no marked differential effects of inhibitors were observed. The activity of the induced system is proportional to log turanose concentration (from about 1 to 300 mug/ml), and is an approximate linear function of time of exposure (from about 1 to 50 min). Accumulation of trehalose occurred against a concentration gradient in both systems but particularly in the induced. No leakage was observed. The activity of the induced system declined slowly upon removal of the inducer. Accumulated trehalose is metabolized after activation by azide as are the endogenous trehalose reserves. The accumulated trehalose appears to enter the endogenous trehalose pool found in these spores, although some data suggest it may be more accessible. Respiratory data indicate that absorbed trehalose is available for metabolism while in transit from the external membrane to the internal pool.
海藻糖通过两种不同的系统被吸收——一种是组成型的,另一种由松二糖诱导,且在较小程度上由黑曲霉糖诱导,但不由海藻糖诱导。组成型系统显然由一种表面海藻糖酶介导;诱导型系统具有通透酶的特征。诱导型系统的特异性显然仅限于α-葡糖基-葡萄糖或葡糖基-果糖键,因为除了海藻糖之外,曲二糖、黑曲霉糖、麦芽糖、异麦芽糖、松二糖、蔗糖和蜜三糖的吸收也增加了。β-连接的或含半乳糖的二糖的吸收没有增加。组成型和诱导型海藻糖吸收系统在活性、特异性、对酸处理的稳定性、底物浓度的影响以及最适pH值方面存在差异。两个系统都需要氧气,并且未观察到抑制剂有明显的差异效应。诱导型系统的活性与松二糖浓度的对数成正比(约1至300微克/毫升),并且是暴露时间(约1至50分钟)的近似线性函数。在两个系统中,尤其是在诱导型系统中,海藻糖逆浓度梯度积累。未观察到泄漏。去除诱导剂后,诱导型系统的活性缓慢下降。积累的海藻糖在被叠氮化钠激活后会像内源性海藻糖储备一样被代谢。积累的海藻糖似乎进入了这些孢子中发现的内源性海藻糖库,尽管一些数据表明它可能更容易获取。呼吸数据表明,吸收的海藻糖在从外膜转运到内部库的过程中可用于代谢。