Plant Cell Biotechnology Millennium Nucleus, Center of Plant Biotechnology, Andres Bello University, República 217, Santiago, Chile.
Plant J. 2010 Feb 1;61(3):423-35. doi: 10.1111/j.1365-313X.2009.04066.x. Epub 2009 Nov 3.
Uridine 5'-diphosphate (UDP)-glucose is transported into the lumen of the endoplasmic reticulum (ER), and the Arabidopsis nucleotide sugar transporter AtUTr1 has been proposed to play a role in this process; however, different lines of evidence suggest that another transporter(s) may also be involved. Here we show that AtUTr3 is involved in the transport of UDP-glucose and is located at the ER but also at the Golgi. Insertional mutants in AtUTr3 showed no obvious phenotype. Biochemical analysis in both AtUTr1 and AtUTr3 mutants indicates that uptake of UDP-glucose into the ER is mostly driven by these two transporters. Interestingly, the expression of AtUTr3 is induced by stimuli that trigger the unfolded protein response (UPR), a phenomenon also observed for AtUTr1, suggesting that both AtUTr1 and AtUTr3 are involved in supplying UDP-glucose into the ER lumen when misfolded proteins are accumulated. Disruption of both AtUTr1 and AtUTr3 causes lethality. Genetic analysis showed that the atutr1 atutr3 combination was not transmitted by pollen and was poorly transmitted by the ovules. Cell biology analysis indicates that knocking out both genes leads to abnormalities in both male and female germ line development. These results show that the nucleotide sugar transporters AtUTr1 and AtUTr3 are required for the incorporation of UDP-glucose into the ER, are essential for pollen development and are needed for embryo sac progress in Arabidopsis thaliana.
尿苷 5′-二磷酸葡萄糖(UDP-葡萄糖)被运入内质网(ER)腔中,拟南芥核苷酸糖转运蛋白 AtUTr1 被认为在此过程中发挥作用;然而,不同的证据表明可能还有其他转运蛋白(s)参与其中。本文中,我们发现 AtUTr3 参与 UDP-葡萄糖的转运,其位于 ER 上,也位于高尔基体上。AtUTr3 的插入突变体没有明显的表型。AtUTr1 和 AtUTr3 突变体的生化分析表明,UDP-葡萄糖进入 ER 的摄取主要由这两种转运蛋白驱动。有趣的是,AtUTr3 的表达受触发未折叠蛋白反应(UPR)的刺激诱导,AtUTr1 也存在这种现象,表明当错误折叠的蛋白质积累时,AtUTr1 和 AtUTr3 都参与将 UDP-葡萄糖供应到 ER 腔中。同时敲除 AtUTr1 和 AtUTr3 会导致致死性。遗传分析表明,atutr1 atutr3 组合不能通过花粉传递,也不能通过胚珠很好地传递。细胞生物学分析表明,敲除这两个基因会导致雄性和雌性生殖系发育异常。这些结果表明,核苷酸糖转运蛋白 AtUTr1 和 AtUTr3 对于 UDP-葡萄糖掺入 ER 是必需的,对于花粉发育是必需的,并且对于拟南芥胚囊发育也是必需的。