Burn Joanne E, Hurley Ursula A, Birch Rosemary J, Arioli Tony, Cork Ann, Williamson Richard E
Plant Cell Biology Group, Research School of Biological Sciences, The Australian National University, GPO Box 475, Canberra, ACT 2601, Australia.
Plant J. 2002 Dec;32(6):949-60. doi: 10.1046/j.1365-313x.2002.01483.x.
rsw3 is a temperature-sensitive mutant of Arabidopsis thaliana showing radially swollen roots and a deficiency in cellulose. The rsw3 gene was identified by a map-based strategy, and shows high similarity to the catalytic alpha-subunits of glucosidase II from mouse, yeast and potato. These enzymes process N-linked glycans in the ER, so that they bind and then release chaperones as part of the quality control pathway, ensuring correct protein folding. Putative beta-subunits for the glucosidase II holoenzyme identified in the Arabidopsis and rice genomes share characteristic motifs (including an HDEL ER-retention signal) with beta-subunits in mammals and yeast. The genes encoding the putative alpha- and beta-subunits are single copy and, like the rsw3 phenotype, widely expressed. rsw3 reduces cell number more strongly than cell size in stamen filaments and probably stems. Most features of the rsw3 phenotype are shared with other cellulose-deficient mutants, but some--notably, production of multiple rosettes and a lack of secreted seed mucilage--are not and may reflect glucosidase II affecting processes other than cellulose synthesis. The rsw3 root phenotype develops more slowly than the rsw1 and rsw2 phenotypes when seedlings are transferred to the restrictive temperature. This is consistent with rsw3 reducing glycoprotein delivery from the ER to the plasma membrane whereas rsw1 and rsw2 act more rapidly by affecting the properties of already delivered enzymes.
rsw3是拟南芥的一个温度敏感型突变体,其根部呈径向肿胀且纤维素缺乏。rsw3基因通过图位克隆策略得以鉴定,与小鼠、酵母和马铃薯的葡糖苷酶II催化α亚基具有高度相似性。这些酶在内质网中加工N - 连接聚糖,从而在质量控制途径中结合并释放伴侣蛋白,确保蛋白质正确折叠。在拟南芥和水稻基因组中鉴定出的葡糖苷酶II全酶的假定β亚基与哺乳动物和酵母中的β亚基具有共同的特征基序(包括一个HDEL内质网滞留信号)。编码假定α亚基和β亚基的基因是单拷贝的,并且与rsw3表型一样广泛表达。在雄蕊花丝以及可能的茎中,rsw3对细胞数量的减少作用比对细胞大小的减少作用更强。rsw3表型的大多数特征与其他纤维素缺乏型突变体相同,但有些特征——特别是产生多个莲座叶丛和缺乏分泌型种子粘液——则不同,这可能反映出葡糖苷酶II影响了纤维素合成以外的其他过程。当幼苗转移到限制温度时,rsw3根表型的发育比rsw1和rsw2表型更慢。这与rsw3减少从内质网到质膜的糖蛋白转运一致,而rsw1和rsw2通过影响已转运酶的性质作用更快。