Han Sang Eun, Seo Young Sam, Heo Seong, Kim Daeil, Sung Soon-Kee, Kim Woo Taek
Department of Biology, College of Life Science and Biotechnology, Yonsei University, Seoul, 120-749, South Korea.
Plant Cell Rep. 2008 Aug;27(8):1291-301. doi: 10.1007/s00299-008-0555-4. Epub 2008 May 27.
From database comparisons of 1,117 expressed sequence tags (ESTs) generated from ripened Fuji apple fruits, we identified ten ubiquitin (Ub)-related genes. RNA gel-blot analysis suggests that these Ub-related genes are induced by at least four distinct signaling pathways in fruits. In this study, we analyzed structure and expression of MdFBCP1, encoding an F-box-containing protein 1, in Fuji apples. MdFBCP1 transcript was predominantly expressed in the fully ripened climacteric fruits, in which serge of ethylene production occurred. The MdFBCP1 gene was also activated effectively in response to exogenous ethylene treatment, with the induction pattern being comparable to those of ACC oxidase and beta-cyanoalanine synthase. Thus, it seems likely that the expression of MdFBCP1 is closely associated with a climacteric ethylene production and ACC oxidase activity and, hence, MdFBCP1 may play a role in the ripening process of Fuji apple fruits. Yeast two hybrid and in vitro pull-down assays revealed that MdFBCP1 physically interacted with MdSkp1 and N-terminal F-box motif was essential for this interaction. These results suggest that MdFBCP1 indeed functions as an F-box-containing protein and participates in the formation of SCF complex, which acts as E3 Ub ligase. Genomic Southern blot analysis showed that MdFBCP1 exhibited different pattern of restriction enzyme digestion in three cultivars (Tsugaru, Golden Delicious and Fuji) that produce different amount of ethylene, suggesting that the MdFBCP1 gene is organized in a cultivar specific manner. Collectively, our data suggest that Ub degradation pathway may play an important role in the ripening of Fuji apple fruits.
通过对从成熟富士苹果果实中产生的1117个表达序列标签(EST)进行数据库比较,我们鉴定出10个与泛素(Ub)相关的基因。RNA凝胶印迹分析表明,这些与Ub相关的基因在果实中至少由四种不同的信号通路诱导。在本研究中,我们分析了富士苹果中编码含F盒蛋白1的MdFBCP1的结构和表达。MdFBCP1转录本主要在完全成熟的跃变型果实中表达,其中乙烯产量激增。MdFBCP1基因对外源乙烯处理也有有效激活,其诱导模式与ACC氧化酶和β-氰基丙氨酸合酶的诱导模式相当。因此,MdFBCP1的表达似乎与跃变型乙烯产生和ACC氧化酶活性密切相关,因此,MdFBCP1可能在富士苹果果实的成熟过程中发挥作用。酵母双杂交和体外下拉试验表明,MdFBCP1与MdSkp1发生物理相互作用,N端F盒基序对于这种相互作用至关重要。这些结果表明,MdFBCP1确实作为一种含F盒蛋白发挥作用,并参与了作为E3 Ub连接酶的SCF复合物的形成。基因组Southern印迹分析表明,MdFBCP1在产生不同量乙烯的三个品种(津轻、金冠和富士)中表现出不同的限制性酶切模式,表明MdFBCP1基因以品种特异性方式组织。总的来说,我们的数据表明Ub降解途径可能在富士苹果果实的成熟中起重要作用。