Mukerjea Rupendra, Robyt John F
Department of Biochemistry, Laboratory of Carbohydrate Chemistry and Enzymology, Iowa State University, 4252 Molecular Biology Bldg, Ames, IA 50011, USA.
Carbohydr Res. 2003 Sep 1;338(18):1811-22. doi: 10.1016/s0008-6215(03)00318-5.
D-[14C]glucose was incorporated into starch when 12 varieties of starch granules were incubated with [14C]sucrose. Digestion of the 14C-labeled starches with porcine pancreatic alpha amylase showed that a high percentage (16.1-84.1%) of the synthesized starch gave a relatively high molecular weight alpha-limit dextrin. Hydrolysis of the 12 varieties of starch granules by alpha amylase, without sucrose treatment, also gave an alpha-limit dextrin, ranging in amounts from 0.51% (w/w) for amylomaize-7 starch to 8.47% (w/w) for rice starch. These alpha-limit dextrins had relatively high molecular weights, 2.47 kDa for amylomaize-7 starch to 5.75 kDa for waxy maize starch, and a high degree of alpha-(1-->6) branching, ranging from 15.6% for rice starch to 41.1% for shoti starch. ADPGlc and UDPGlc did not synthesize a significant amount (1-2%) of the branched component, suggesting that sucrose is the probable substrate for the in vivo synthesis of the component and that sucrose is not first converted into a nucleotide-glucose diphosphate intermediate.
当12种淀粉颗粒与[14C]蔗糖一起孵育时,D-[14C]葡萄糖被掺入淀粉中。用猪胰α-淀粉酶消化14C标记的淀粉表明,合成淀粉中有很高比例(16.1 - 84.1%)产生了相对高分子量的α-极限糊精。在没有蔗糖处理的情况下,用α-淀粉酶水解这12种淀粉颗粒,也产生了α-极限糊精,其含量范围从直链玉米淀粉-7的0.51%(w/w)到大米淀粉的8.47%(w/w)。这些α-极限糊精具有相对较高的分子量,直链玉米淀粉-7的为2.47 kDa,糯玉米淀粉的为5.75 kDa,并且具有高度的α-(1→6)分支,范围从大米淀粉的15.6%到射蒂淀粉的41.1%。ADPGlc和UDPGlc没有合成大量(1 - 2%)的分支成分,这表明蔗糖可能是该成分体内合成的底物,并且蔗糖不会首先转化为核苷酸-葡萄糖二磷酸中间体。