Wang Yuying, Wang Weihao, Cai Jianghua, Zhang Yanrui, Qin Guozheng, Tian Shiping
Genome Biol. 2014;15(12):548. doi: 10.1186/s13059-014-0548-2.
Fruits are unique to flowering plants and play a central role in seed maturation and dispersal. Molecular dissection of fruit ripening has received considerable interest because of the biological and dietary significance of fruit. To better understand the regulatory mechanisms underlying fruit ripening, we report here the first comprehensive analysis of the nuclear proteome in tomato fruits.
Nuclear proteins were isolated from tomatoes in different stages of ripening, and subjected to iTRAQ (isobaric tags for relative and absolute quantification) analysis. We show that the proteins whose abundances change during ripening stages are involved in various cellular processes. We additionally evaluate changes in the nuclear proteome in the ripening-deficient mutant, ripening-inhibitor (rin), carrying a mutation in the transcription factor RIN. A set of proteins were identified and particular attention was paid to SlUBC32 and PSMD2, the components of ubiquitin-proteasome pathway. Through chromatin immunoprecipitation and gel mobility shift assays, we provide evidence that RIN directly binds to the promoters of SlUBC32 and PSMD2. Moreover, loss of RIN function affects protein ubiquitination in nuclei. SlUBC32 encodes an E2 ubiquitin-conjugating enzyme and a genome-wide survey of the E2 gene family in tomatoes identified five more E2s as direct targets of RIN. Virus-induced gene silencing assays show that two E2s are involved in the regulation of fruit ripening.
Our results uncover a novel function of protein ubiquitination, identifying specific E2s as regulators of fruit ripening. These findings contribute to the unraveling of the gene regulatory networks that control fruit ripening.
果实是开花植物所特有的,在种子成熟和传播过程中发挥着核心作用。由于果实具有生物学和饮食方面的重要意义,果实成熟的分子剖析受到了广泛关注。为了更好地理解果实成熟的调控机制,我们在此报告对番茄果实核蛋白质组的首次全面分析。
从处于不同成熟阶段的番茄中分离出核蛋白,并进行iTRAQ(相对和绝对定量的等压标签)分析。我们发现,在成熟阶段丰度发生变化的蛋白质参与了各种细胞过程。我们还评估了成熟缺陷型突变体“成熟抑制剂”(rin)中核蛋白质组的变化,该突变体在转录因子RIN中发生了突变。鉴定出了一组蛋白质,并特别关注泛素 - 蛋白酶体途径的组成部分SlUBC32和PSMD2。通过染色质免疫沉淀和凝胶迁移率变动分析,我们提供证据表明RIN直接结合到SlUBC32和PSMD2的启动子上。此外,RIN功能的丧失影响细胞核中的蛋白质泛素化。SlUBC32编码一种E2泛素结合酶,对番茄中E2基因家族的全基因组调查又鉴定出另外5种E2作为RIN的直接靶标。病毒诱导的基因沉默试验表明,两种E2参与果实成熟的调控。
我们的结果揭示了蛋白质泛素化的新功能,确定了特定的E2作为果实成熟的调节因子。这些发现有助于揭示控制果实成熟的基因调控网络。