Department of Biotechnology, Central University of Rajasthan, Bandarsindri, Ajmer, 305817, India.
Sci Rep. 2017 Aug 17;7(1):8613. doi: 10.1038/s41598-017-09121-4.
The ubiquitin-proteasomal degradation mechanism has gained the attention over the past decade. The E2 ubiquitin conjugating enzymes are the crucial part of ubiquitination mechanism and they are believed to hold imperative association for plant development. It accepts ubiquitin from the E1 enzyme and interacts with the E3 ligase to transfer ubiquitin or directly transfers ubiquitin to the substrate. The functional aspects of E2 ubiquitin enzymes in plant systems are unclear. Tomato is being used as a model plant and rarely explored to study E2 ubiquitin enzyme. We have utilized in-silico methods to analyze E2 enzymes in Solanum lycopersicum and 59 genes were identified with UBC family domains. The physio-chemical properties, chromosomal localization, structural organization, gene duplication, promoter analysis, gene ontology and conserved motifs were investigated along with phylogenetic analysis of tomato E2 genes exploring evolutionary relations. The gene expression analysis of RNA sequencing data revealed expression profile of tomato E2 genes in seedling, root, leaf, seed, fruit, and flower tissues. Our study aid in the understanding of distribution, expansion, evolutionary relation and probable participation in plant biological processes of tomato E2 enzymes that will facilitate strong base for future research on ubiquitin-mediated regulations in tomato and other plant systems.
泛素-蛋白酶体降解机制在过去十年中引起了广泛关注。E2 泛素连接酶是泛素化机制的关键部分,它们被认为与植物发育有着重要的联系。E2 酶从 E1 酶接受泛素,并与 E3 连接酶相互作用,将泛素转移或直接将泛素转移到底物上。E2 泛素酶在植物系统中的功能方面尚不清楚。番茄被用作模式植物,但很少被用来研究 E2 泛素酶。我们利用计算机方法分析了番茄中的 E2 酶,鉴定出 59 个具有 UBC 家族结构域的基因。我们研究了番茄 E2 基因的理化性质、染色体定位、结构组织、基因复制、启动子分析、基因本体和保守基序,并进行了系统发育分析,以探索进化关系。RNA 测序数据的基因表达分析揭示了番茄 E2 基因在幼苗、根、叶、种子、果实和花组织中的表达谱。我们的研究有助于理解番茄 E2 酶的分布、扩张、进化关系以及可能参与植物生物学过程,为未来在番茄和其他植物系统中进行泛素介导的调控研究提供了坚实的基础。