Cho Jung-Il, Ryoo Nayeon, Ko Seho, Lee Sang-Kyu, Lee Junok, Jung Ki-Hong, Lee Youn-Hyung, Bhoo Seong Hee, Winderickx Joris, An Gynheung, Hahn Tae-Ryong, Jeon Jong-Seong
Plant Metabolism Research Center & Graduate School of Biotechnology, Kyung Hee University, 449-701 Yongin, Republic of South Korea.
Planta. 2006 Aug;224(3):598-611. doi: 10.1007/s00425-006-0251-y. Epub 2006 Mar 22.
Hexokinase (HXK) is a dual-function enzyme that both phosphorylates hexose to form hexose 6-phosphate and plays an important role in sugar sensing and signaling. To investigate the roles of hexokinases in rice growth and development, we analyzed rice sequence databases and isolated ten rice hexokinase cDNAs, OsHXK1 (Oryza sativa Hexokinase 1) through OsHXK10. With the exception of the single-exon gene OsHXK1, the OsHXKs all have a highly conserved genomic structure consisting of nine exons and eight introns. Gene expression profiling revealed that OsHXK2 through OsHXK9 are expressed ubiquitously in various organs, whereas OsHXK10 expression is pollen-specific. Sugars induced the expression of three OsHXKs, OsHXK2, OsHXK5, and OsHXK6, in excised leaves, while suppressing OsHXK7 expression in excised leaves and immature seeds. The hexokinase activity of the OsHXKs was confirmed by functional complementation of the hexokinase-deficient yeast strain YSH7.4-3C (hxk1, hxk2, glk1). OsHXK4 was able to complement this mutant only after the chloroplast-transit peptide was removed. The subcellular localization of OsHXK4 and OsHXK7, observed with green fluorescent protein (GFP) fusion constructs, indicated that OsHXK4 is a plastid-stroma-targeted hexokinase while OsHXK7 localizes to the cytosol.
己糖激酶(HXK)是一种双功能酶,它既能将己糖磷酸化形成6-磷酸己糖,又在糖感知和信号传导中发挥重要作用。为了研究己糖激酶在水稻生长发育中的作用,我们分析了水稻序列数据库,并分离出10个水稻己糖激酶cDNA,即从水稻己糖激酶1(OsHXK1)到水稻己糖激酶10(OsHXK10)。除了单外显子基因OsHXK1外,其他OsHXK基因都具有高度保守的基因组结构,由9个外显子和8个内含子组成。基因表达谱分析表明,OsHXK2至OsHXK9在各个器官中普遍表达,而OsHXK10的表达具有花粉特异性。糖类诱导了离体叶片中3个OsHXK基因(OsHXK2、OsHXK5和OsHXK6)的表达,同时抑制了离体叶片和未成熟种子中OsHXK7的表达。通过对己糖激酶缺陷型酵母菌株YSH7.4 - 3C(hxk1、hxk2、glk1)进行功能互补,证实了OsHXK基因的己糖激酶活性。只有去除叶绿体转运肽后,OsHXK4才能互补该突变体。通过绿色荧光蛋白(GFP)融合构建体观察到的OsHXK4和OsHXK7的亚细胞定位表明,OsHXK4是一种定位于质体基质的己糖激酶,而OsHXK7定位于细胞质溶胶。