Minami Anzu, Tominaga Yoko, Furuto Akari, Kondo Mariko, Kawamura Yukio, Uemura Matsuo
Cryobiofrontier Research Center, Iwate University, Morioka, 020-8550, Japan.
Plant J. 2015 Aug;83(3):501-14. doi: 10.1111/tpj.12907. Epub 2015 Jul 2.
The freezing tolerance of Arabidopsis thaliana is enhanced by cold acclimation, resulting in changes in the compositions and function of the plasma membrane. Here, we show that a dynamin-related protein 1E (DRP1E), which is thought to function in the vesicle trafficking pathway in cells, is related to an increase in freezing tolerance during cold acclimation. DRP1E accumulated in sphingolipid and sterol-enriched plasma membrane domains after cold acclimation. Analysis of drp1e mutants clearly showed that DRP1E is required for full development of freezing tolerance after cold acclimation. DRP1E fused with green fluorescent protein was visible as small foci that overlapped with fluorescent dye-labelled plasma membrane, providing evidence that DRP1E localizes non-uniformly in specific areas of the plasma membrane. These results suggest that DRP1E accumulates in sphingolipid and sterol-enriched plasma membrane domains and plays a role in freezing tolerance development during cold acclimation.
拟南芥的耐冻性通过低温驯化得以增强,这导致质膜的组成和功能发生变化。在此,我们表明,一种被认为在细胞囊泡运输途径中发挥作用的发动蛋白相关蛋白1E(DRP1E),与低温驯化期间耐冻性的提高有关。低温驯化后,DRP1E在富含鞘脂和甾醇的质膜结构域中积累。对drp1e突变体的分析清楚地表明,低温驯化后充分发展耐冻性需要DRP1E。与绿色荧光蛋白融合的DRP1E可见为与荧光染料标记的质膜重叠的小焦点,这证明DRP1E在质膜的特定区域非均匀定位。这些结果表明,DRP1E在富含鞘脂和甾醇的质膜结构域中积累,并在低温驯化期间耐冻性的发展中发挥作用。