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SUMO-Dependent Synergism Involving Heat Shock Transcription Factors with Functions Linked to Seed Longevity and Desiccation Tolerance

机译:涉及热休克转录因子的SUMO依赖性协同作用其功能与种子寿命和耐干燥性有关

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摘要

A transcriptional synergism between HaHSFA9 (A9) and HaHSFA4a (A4a) contributes to determining longevity and desiccation tolerance of sunflower (Helianthus annuus, L.) seeds. Potential lysine SUMOylation sites were identified in A9 and A4a and mutated to arginine. We show that A9 is SUMOylated in planta at K38. Although we did not directly detect SUMOylated A4a in planta, we provide indirect evidence from transient expression experiments indicating that A4a is SUMOylated at K172. Different combinations of wild type and SUMOylation site mutants of A9 and A4a were analyzed by transient expression in sunflower embryos and leaves. Although most of the precedents in literature link SUMOylation with repression, the A9 and A4a synergism was fully abolished when the mutant forms for both factors were combined. However, the combination of mutant forms of A9 and A4a did not affect the nuclear retention of A4a by A9; therefore, the analyzed mutations would affect the synergism after the mutual interaction and nuclear co-localization of A9 and A4a. Our results suggest a role for HSF SUMOylation during late, zygotic, embryogenesis. The SUMOylation of A9 (or A4a) would allow a crucial, synergic, transcriptional effect that occurs in maturing sunflower seeds.
机译:HaHSFA9(A9)和HaHSFA4a(A4a)之间的转录协同作用有助于确定向日葵(向日葵)种子的寿命和耐干燥性。在A9和A4a中鉴定出潜在的赖氨酸SUMO化位点,并突变为精氨酸。我们显示,A9在K38的植物体内被SUMOylated。尽管我们没有直接在植物中检测到SUMO酰化的A4a,但我们提供了来自瞬时表达实验的间接证据,表明A4a在K172上被SUMO酰化。通过在向日葵胚和叶中的瞬时表达来分析A9和A4a的野生型和SUMO化位点突变体的不同组合。尽管文献中的大多数先例都将SUMOylation与抑制联系在一起,但是当两个因子的突变体形式组合在一起时,A9和A4a的协同作用就被完全废除。然而,突变体形式的A9和A4a的组合并没有影响A9对A4a的核保留;因此,经分析的突变将影响A9和A4a的相互作用和核共定位后的协同作用。我们的结果表明HSF SUMOylation在晚期,合子,胚胎发生过程中发挥作用。 A9(或A4a)的SUMOylation可以在成熟的向日葵种子中产生关键的,协同的,转录作用。

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