Department of Biology, Knox College, Galesburg, Illinois 61401 USA.
Am J Bot. 2002 Mar;89(3):401-9. doi: 10.3732/ajb.89.3.401.
In barley (Hordeum vulgare L. cv. Himalaya) aleurone layers, heat shock causes the selective suppression of α-amylase synthesis by destabilizing this secretory protein's mRNA. The lamellar stacks of the endoplasmic reticulum (ER), which serve as the site of α-amylase mRNA translation, are dissociated by heat shock, suggesting that heat-shock-induced changes in ER may be important in selectively targeting α-amylase mRNAs for destabilization. We have found that samples maintained at heat-shock temperature (40°C) for 18 h recover the ability to synthesize α-amylase and that the ER membranes in these samples contain membrane phospholipids with enhanced levels of fatty acid saturation. This present study investigated whether gradual warming to 40°C over 3-6 h (ramping) would preserve α-amylase synthesis by permitting ER membrane phospholipid retailoring during the gradual temperature increase. Analyses by sodium dodecyl-sulfate polyacrylamide gel electrophoresis revealed that α-amylase synthesis was markedly increased in ramped samples. Furthermore, northern hybridization analyses and transmission electron microscopy showed that these samples had increased α-amylase mRNA levels and stacks of ER lamellae, respectively. Gas chromatographic analyses of ER membrane phospholipids indicated that the fatty acids of ramped samples were more saturated than their heat-shocked counterparts. These data indicate that heat-induced increases in aleurone ER membrane phospholipid fatty acid saturation may be important in maintaining secretory protein expression at normally nonpermissive heat-shock temperatures.
在大麦(Hordeum vulgare L. cv. Himalaya)糊粉层中,热休克通过使这种分泌蛋白的 mRNA 失稳,选择性地抑制α-淀粉酶的合成。作为α-淀粉酶 mRNA 翻译的场所的内质网(ER)的板层堆栈通过热休克解离,这表明 ER 中的热休克诱导的变化可能在选择性靶向α-淀粉酶 mRNAs 失稳方面很重要。我们发现,在热休克温度(40°C)下保持 18 小时的样品恢复了合成α-淀粉酶的能力,并且这些样品中的 ER 膜含有具有增强的脂肪酸饱和度的膜磷脂。本研究探讨了在逐渐升温过程中通过允许 ER 膜磷脂重新排列,逐渐升温至 40°C(斜坡)是否会通过允许 ER 膜磷脂重新排列来保存α-淀粉酶的合成。十二烷基硫酸钠聚丙烯酰胺凝胶电泳分析表明,斜坡样品中α-淀粉酶的合成明显增加。此外, northern 杂交分析和透射电子显微镜显示,这些样品的α-淀粉酶 mRNA 水平和 ER 板层堆栈分别增加。ER 膜磷脂的气相色谱分析表明,斜坡样品的脂肪酸比热休克样品更饱和。这些数据表明,热诱导的糊粉层 ER 膜磷脂脂肪酸饱和度的增加可能对于在正常非允许的热休克温度下维持分泌蛋白的表达很重要。