Nakamura Yasunori, Ono Masami, Sawada Takayuki, Crofts Naoko, Fujita Naoko, Steup Martin
Faculty of Bioresource Sciences, Akita Prefectural University, Akita-City, Akita 010-0195, Japan; Akita Natural Science Laboratory, 25-44 Oiwake-Nishi, Tennoh, Katagami, Akita 010-0101, Japan.
Faculty of Bioresource Sciences, Akita Prefectural University, Akita-City, Akita 010-0195, Japan.
Plant Sci. 2017 Nov;264:83-95. doi: 10.1016/j.plantsci.2017.09.002. Epub 2017 Sep 12.
Functional interactions of plastidial phosphorylase (Pho1) and starch branching enzymes (BEs) from the developing rice endosperm are the focus of this study. In the presence of both Pho1 and BE, the same branched primer molecule is elongated and further branched almost simultaneously even at very low glucan concentrations present in the purified enzyme preparations. By contrast, in the absence of any BE, glucans are not, to any significant extent, elongated by Pho1. Based on our in vitro data, in the developing rice endosperm, Pho1 appears to be weakly associated with any of the BE isozymes. By using fluorophore-labeled malto-oligosaccharides, we identified maltose as the smallest possible primer for elongation by Pho1. Linear dextrins act as carbohydrate substrates for BEs. By functionally interacting with a BE, Pho1 performs two essential functions during the initiation of starch biosynthesis in the rice endosperm: First, it elongates maltodextrins up to a degree of polymerization of at least 60. Second, by closely interacting with BEs, Pho1 is able to elongate branched glucans efficiently and thereby synthesizes branched carbohydrates essential for the initiation of amylopectin biosynthesis.
本研究聚焦于发育中的水稻胚乳中质体磷酸化酶(Pho1)与淀粉分支酶(BEs)的功能相互作用。在Pho1和BE同时存在的情况下,即使在纯化酶制剂中存在的葡聚糖浓度非常低时,相同的分支引物分子也会几乎同时被延长并进一步分支。相比之下,在没有任何BE的情况下,Pho1不会在任何显著程度上延长葡聚糖。基于我们的体外数据,在发育中的水稻胚乳中,Pho1似乎与任何一种BE同工酶的关联较弱。通过使用荧光团标记的麦芽寡糖,我们确定麦芽糖是Pho1延长的最小可能引物。线性糊精作为BEs的碳水化合物底物。通过与BE功能相互作用,Pho1在水稻胚乳淀粉生物合成起始过程中执行两个基本功能:第一,它将麦芽糊精延长至聚合度至少为60。第二,通过与BE紧密相互作用,Pho1能够有效地延长分支葡聚糖,从而合成支链淀粉生物合成起始所必需的分支碳水化合物。