Utsumi Yoshinori, Nakamura Yasunori
Department of Biological Production, Akita Prefectural University, 241-7 Kaidobata-Nishi, Shimoshinjyo-Nakano, Akita-city, 010-0195, Japan.
Planta. 2006 Dec;225(1):75-87. doi: 10.1007/s00425-006-0331-z. Epub 2006 Sep 5.
The present study established that there are two distinct polymeric forms of isoamylase1 (ISA1) in rice endosperm: presumably a homo-pentamer of ISA1 and a hetero-hexamer composed of five ISA1 and one ISA2. The molecular sizes of the homo- and hetero-oligomers, which could be fractionated by hydrophobic chromatography, were approximately 420-480 and 510-550 kDa, respectively. The hetero-oligomer exhibited higher affinities for various branched polyglucans, especially for phytoglycogen, which had a K(m) value that was approximately 12 times lower relative to that with the homo-oligomer, although no marked differences were found in chain preferences for debranching of amylopectin and phytoglycogen between these forms. The hetero-oligomer was active even when incubated at 50 degrees C for 10 min, while the homo-multimer was completely inactivated at 40 degrees C in 10 min. When the ISA1 homo-oligomer was incubated with the ISA2 protein expressed in Escherichia coli and applied onto a nondenature polyacrylamide gel, additional debranching activity bands which were specific for the purified ISA1-ISA2 preparation were also detected, indicating that ISA1 and ISA2 combine to form a hetero-oligomer. These results suggest that the hetero-oligomer plays a predominant role in the amylopectin biosynthesis in rice endosperm although the homo-oligomer can complement the function of the hetero-oligomer at least to some extent.
本研究证实,水稻胚乳中存在两种不同的异淀粉酶1(ISA1)聚合形式:推测一种是ISA1的同五聚体,另一种是由五个ISA1和一个ISA2组成的异六聚体。通过疏水色谱法可分离的同聚体和异聚体的分子大小分别约为420 - 480 kDa和510 - 550 kDa。异聚体对各种支链多聚糖表现出更高的亲和力,尤其是对植物糖原,其K(m)值相对于同聚体约低12倍,尽管在这些形式之间,支链淀粉和植物糖原脱支的链偏好没有明显差异。异聚体即使在50℃孵育10分钟仍有活性,而同聚体在40℃ 10分钟内完全失活。当ISA1同聚体与在大肠杆菌中表达的ISA2蛋白一起孵育并应用于非变性聚丙烯酰胺凝胶时,还检测到了对纯化的ISA1 - ISA2制剂特异的额外脱支活性条带,表明ISA1和ISA2结合形成异聚体。这些结果表明,异聚体在水稻胚乳支链淀粉生物合成中起主要作用,尽管同聚体至少在一定程度上可以补充异聚体的功能。