Wang Yong, Ribot Cécile, Rezzonico Enea, Poirier Yves
Département de Biologie Moléculaire Végétale, Bâtiment de Biologie, Université de Lausanne, CH-1015 Lausanne, Switzerland.
Plant Physiol. 2004 May;135(1):400-11. doi: 10.1104/pp.103.037945. Epub 2004 Apr 30.
PHO1 has been recently identified as a protein involved in the loading of inorganic phosphate into the xylem of roots in Arabidopsis. The genome of Arabidopsis contains 11 members of the PHO1 gene family. The cDNAs of all PHO1 homologs have been cloned and sequenced. All proteins have the same topology and harbor a SPX tripartite domain in the N-terminal hydrophilic portion and an EXS domain in the C-terminal hydrophobic portion. The SPX and EXS domains have been identified in yeast (Saccharomyces cerevisiae) proteins involved in either phosphate transport or sensing or in sorting proteins to endomembranes. The Arabidopsis genome contains additional proteins of unknown function containing either a SPX or an EXS domain. Phylogenetic analysis indicated that the PHO1 family is subdivided into at least three clusters. Reverse transcription-PCR revealed a broad pattern of expression in leaves, roots, stems, and flowers for most genes, although two genes are expressed exclusively in flowers. Analysis of the activity of the promoter of all PHO1 homologs using promoter-beta-glucuronidase fusions revealed a predominant expression in the vascular tissues of roots, leaves, stems, or flowers. beta-Glucuronidase expression is also detected for several promoters in nonvascular tissue, including hydathodes, trichomes, root tip, root cortical/epidermal cells, and pollen grains. The expression pattern of PHO1 homologs indicates a likely role of the PHO1 proteins not only in the transfer of phosphate to the vascular cylinder of various tissues but also in the acquisition of phosphate into cells, such as pollen or root epidermal/cortical cells.
PHO1最近被鉴定为一种参与拟南芥根部无机磷酸盐向木质部装载的蛋白质。拟南芥基因组包含11个PHO1基因家族成员。所有PHO1同源物的cDNA已被克隆和测序。所有蛋白质具有相同的拓扑结构,在N端亲水区含有一个SPX三方结构域,在C端疏水区含有一个EXS结构域。SPX和EXS结构域已在参与磷酸盐转运或传感或参与蛋白质分选至内膜的酵母(酿酒酵母)蛋白质中被鉴定。拟南芥基因组包含其他功能未知的蛋白质,它们含有SPX或EXS结构域。系统发育分析表明,PHO1家族至少分为三个簇。逆转录PCR显示,大多数基因在叶、根、茎和花中呈现广泛的表达模式,尽管有两个基因仅在花中表达。使用启动子-β-葡萄糖醛酸酶融合对所有PHO1同源物的启动子活性进行分析,结果显示在根、叶、茎或花的维管组织中主要表达。在包括水孔、毛状体、根尖、根皮层/表皮细胞和花粉粒在内的非维管组织中的几个启动子中也检测到β-葡萄糖醛酸酶表达。PHO1同源物的表达模式表明,PHO1蛋白不仅可能在将磷酸盐转运到各种组织的维管束中发挥作用,而且在将磷酸盐摄取到细胞中,如花粉或根表皮/皮层细胞中也发挥作用。