Kim Y K, Robyt J F
Laboratory of Carbohydrate Chemistry and Enzymology, Iowa State University, Ames 50011 USA.
Carbohydr Res. 2000 Oct 6;328(4):509-15. doi: 10.1016/s0008-6215(00)00136-1.
Cyclomaltodextrin glucanosyltransferase (CGTase) was adsorbed into starch granules and allowed to react at 37 degrees C. The reaction was conducted with the granules removed from an aqueous environment, but containing 50% w/w water inside the granule. Reaction for 20 h gave a maximum of 1.4%, w/w of cyclodextrins (CDs) inside the granule. Waxy maize and maize starches gave the highest amounts of CDs (1.3 and 1.4%, respectively), with tapioca and amylomaize-7 starches giving about 50% less (0.9 and 0.6%, respectively). Reaction of a combination of CGTase and isoamylase with solid starch granules gave a 2.6-fold increase in the formation of CDs, with a maximum yield of 3.4 and 100% retention inside waxy maize starch granules.
环麦芽糊精葡糖基转移酶(CGTase)被吸附到淀粉颗粒中,并在37摄氏度下进行反应。反应是在从水性环境中取出的颗粒上进行的,但颗粒内部含有50%(w/w)的水。反应20小时后,颗粒内部环糊精(CDs)的最大含量为1.4%(w/w)。糯玉米淀粉和玉米淀粉产生的CDs量最高(分别为1.3%和1.4%),木薯淀粉和直链玉米淀粉-7产生的量约少50%(分别为0.9%和0.6%)。CGTase和异淀粉酶与固体淀粉颗粒结合反应,使CDs的形成增加了2.6倍,在糯玉米淀粉颗粒中的最大产率为3.4%,且保留率为100%。