Context-Dependent Dual Role of SKI8 Homologs in mRNA Synthesis and Turnover

生物 对偶(语法数字) 背景(考古学) 同源染色体 遗传学 计算生物学 信使核糖核酸 蛋白质周转 细胞生物学 进化生物学 蛋白质生物合成 基因 文学类 艺术 古生物学
作者
Eavan Dorcey,Antía Rodríguez‐Villalón,Paula Salinas,Luca Santuari,Sylvain Pradervand,Keith Harshman,Christian S. Hardtke
出处
期刊:PLOS Genetics [Public Library of Science]
卷期号:8 (4): e1002652-e1002652 被引量:37
标识
DOI:10.1371/journal.pgen.1002652
摘要

Eukaryotic mRNA transcription and turnover is controlled by an enzymatic machinery that includes RNA polymerase II and the 3' to 5' exosome. The activity of these protein complexes is modulated by additional factors, such as the nuclear RNA polymerase II-associated factor 1 (Paf1c) and the cytoplasmic Superkiller (SKI) complex, respectively. Their components are conserved across uni- as well as multi-cellular organisms, including yeast, Arabidopsis, and humans. Among them, SKI8 displays multiple facets on top of its cytoplasmic role in the SKI complex. For instance, nuclear yeast ScSKI8 has an additional function in meiotic recombination, whereas nuclear human hSKI8 (unlike ScSKI8) associates with Paf1c. The Arabidopsis SKI8 homolog VERNALIZATION INDEPENDENT 3 (VIP3) has been found in Paf1c as well; however, whether it also has a role in the SKI complex remains obscure so far. We found that transgenic VIP3-GFP, which complements a novel vip3 mutant allele, localizes to both nucleus and cytoplasm. Consistently, biochemical analyses suggest that VIP3-GFP associates with the SKI complex. A role of VIP3 in the turnover of nuclear encoded mRNAs is supported by random-primed RNA sequencing of wild-type and vip3 seedlings, which indicates mRNA stabilization in vip3. Another SKI subunit homolog mutant, ski2, displays a dwarf phenotype similar to vip3. However, unlike vip3, it displays neither early flowering nor flower development phenotypes, suggesting that the latter reflect VIP3's role in Paf1c. Surprisingly then, transgenic ScSKI8 rescued all aspects of the vip3 phenotype, suggesting that the dual role of SKI8 depends on species-specific cellular context.
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