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Conservation of Nonsense-Mediated mRNA Decay Complex Components Throughout Eukaryotic Evolution

机译:在整个真核进化过程中,无义介导的mRNA衰变复合物组分的保守性。

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Nonsense-mediated mRNA decay (NMD) is an essential eukaryotic process regulating transcript quality and abundance, and is involved in diverse processes including brain development and plant defenses. Although some of the NMD machinery is conserved between kingdoms, little is known about its evolution. Phosphorylation of the core NMD component UPF1 is critical for NMD and is regulated in mammals by the SURF complex (UPF1, SMG1 kinase, SMG8, SMG9 and eukaryotic release factors). However, since SMG1 is reportedly missing from the genomes of fungi and the plant Arabidopsis thaliana, it remains unclear how UPF1 is activated outside the metazoa. We used comparative genomics to determine the conservation of the NMD pathway across eukaryotic evolution. We show that SURF components are present in all major eukaryotic lineages, including fungi, suggesting that in addition to UPF1 and SMG1, SMG8 and SMG9 also existed in the last eukaryotic common ancestor, 1.8 billion years ago. However, despite the ancient origins of the SURF complex, we also found that SURF factors have been independently lost across the Eukarya, pointing to genetic buffering within the essential NMD pathway. We infer an ancient role for SURF in regulating UPF1, and the intriguing possibility of undiscovered NMD regulatory pathways.
机译:无义介导的mRNA衰变(NMD)是调节转录物质量和丰度的必不可少的真核生物过程,并参与包括大脑发育和植物防御在内的各种过程。尽管某些NMD机制在王国之间是保守的,但对其演变知之甚少。核心NMD组分UPF1的磷酸化对于NMD至关重要,在哺乳动物中受到SURF复合物(UPF1,SMG1激酶,SMG8,SMG9和真核生物释放因子)的调节。然而,由于据报道真菌和植物拟南芥的基因组中缺少SMG1,因此尚不清楚UPF1如何在后生动物体外被激活。我们使用比较基因组学来确定跨真核生物进化的NMD途径的保守性。我们表明,SURF成分存在于所有主要的真核生物谱系中,包括真菌,这表明除了UPF1和SMG1,SMG8和SMG9还存在于18亿年前的最后一个真核生物祖先中。然而,尽管SURF复合体的起源很久,但我们还发现SURF因子已经在Eukarya上独立丢失,这表明在NMD基本途径中存在基因缓冲作用。我们推断出SURF在调节UPF1中的古老作用,以及未发现的NMD调节途径的潜在可能性。

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