Salvucci Michael E
US Department of Agriculture, Agricultural Research Service, Western Cotton Research Laboratory, 4135 E. Broadway Road, Phoenix, AZ 85040, USA.
Comp Biochem Physiol B Biochem Mol Biol. 2003 Jun;135(2):385-95. doi: 10.1016/s1096-4959(03)00092-7.
Isomaltulose [alpha-D-glucopyranosyl-(1,6)-D-fructofuranose] and trehalulose [alpha-D-glucopyranosyl-(1,1)-D-fructofuranose] are commercially valuable sucrose-substitutes that are produced in several microorganisms by the palI gene product, a sucrose isomerase. Trehalulose also occurs in the silverleaf whitefly, Bemisia argentifoli, as the major carbohydrate in the insect's honeydew. To determine if the enzyme that synthesizes trehalulose in whiteflies was similar to the well-characterized sucrose isomerase from microbial sources, the properties of the enzymes from whiteflies and the bacterium, Erwinia rhapontici, were compared. Partial purification of both enzymes showed that the enzyme from whiteflies was a 116 kD membrane-associated polypeptide, in contrast to the enzyme from E. rhapontici, which was soluble and 66 kD. The enzyme from E. rhapontici converted sucrose to isomaltulose and trehalulose in a 5:1 ratio, whereas the enzyme from whiteflies produced only trehalulose. Unlike the E. rhapontici enzyme, the whitefly enzyme did not convert isomaltulose to trehalulose, but both enzymes catalyzed the transfer of fructose to trehalulose using sucrose as the glucosyl donor. The results indicate that trehalulose synthase from whiteflies is structurally and functionally distinct from the sucrose isomerases described in bacteria. The whitefly enzyme is the first reported case of an enzyme that converts sucrose to exclusively trehalulose.
异麦芽酮糖[α-D-吡喃葡萄糖基-(1,6)-D-呋喃果糖]和海藻酮糖[α-D-吡喃葡萄糖基-(1,1)-D-呋喃果糖]是具有商业价值的蔗糖替代品,它们由蔗糖异构酶palI基因产物在多种微生物中产生。海藻酮糖也存在于银叶粉虱烟粉虱中,是该昆虫蜜露中的主要碳水化合物。为了确定粉虱中合成海藻酮糖的酶是否与微生物来源中已充分表征的蔗糖异构酶相似,对粉虱和细菌雷蒙德氏欧文氏菌中的酶的特性进行了比较。两种酶的部分纯化表明,粉虱中的酶是一种116 kD的膜相关多肽,而雷蒙德氏欧文氏菌中的酶是可溶性的,为66 kD。雷蒙德氏欧文氏菌中的酶以5:1的比例将蔗糖转化为异麦芽酮糖和海藻酮糖,而粉虱中的酶只产生海藻酮糖。与雷蒙德氏欧文氏菌中的酶不同,粉虱中的酶不会将异麦芽酮糖转化为海藻酮糖,但两种酶都以蔗糖作为葡萄糖基供体催化果糖向海藻酮糖的转移。结果表明,粉虱中的海藻酮糖合酶在结构和功能上与细菌中描述的蔗糖异构酶不同。粉虱中的酶是首例被报道的将蔗糖专一转化为海藻酮糖的酶。