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首页> 外文期刊>Scientific reports. >Ribosome-associated Asc1/RACK1 is required for endonucleolytic cleavage induced by stalled ribosome at the 3′ end of nonstop mRNA
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Ribosome-associated Asc1/RACK1 is required for endonucleolytic cleavage induced by stalled ribosome at the 3′ end of nonstop mRNA

机译:核糖体相关的Asc1 / RACK1是不停mRNA 3'端停顿的核糖体诱导的内切核酸裂解所必需的

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Dom34-Hbs1 stimulates degradation of aberrant mRNAs lacking termination codons by dissociating ribosomes stalled at the 3' ends, and plays crucial roles in Nonstop Decay (NSD) and No-Go Decay (NGD). In the dom34Δ mutant, nonstop mRNA is degraded by sequential endonucleolytic cleavages induced by a stalled ribosome at the 3' end. Here, we report that ribosome-associated Asc1/RACK1 is required for the endonucleolytic cleavage of nonstop mRNA by stalled ribosome at the 3' end of mRNA in dom34Δ mutant cells. Asc1/RACK1 facilitates degradation of truncated GFP-Rz mRNA in the absence of Dom34 and exosome-dependent decay. Asc1/RACK1 is required for the sequential endonucleolytic cleavages by the stalled ribosome in the dom34Δ mutant, depending on its ribosome-binding activity. The levels of peptidyl-tRNA derived from nonstop mRNA were elevated in dom34Δasc1Δ mutant cells, and overproduction of nonstop mRNA inhibited growth of mutant cells. E3 ubiquitin ligase Ltn1 degrades the arrest products from truncated GFP-Rz mRNA in dom34Δ and dom34Δasc1Δ mutant cells, and Asc1/RACK1 represses the levels of substrates for Ltn1-dependent degradation. These indicate that ribosome-associated Asc1/RACK1 facilitates endonucleolytic cleavage of nonstop mRNA by stalled ribosomes and represses the levels of aberrant products even in the absence of Dom34. We propose that Asc1/RACK1 acts as a fail-safe in quality control for nonstop mRNA.
机译:Dom34-Hbs1通过解离停滞在3'末端的核糖体来刺激缺乏终止密码子的异常mRNA的降解,并在不间断衰变(NSD)和不发生衰变(NGD)中起关键作用。在dom34Δ突变体中,不间断的mRNA被3'端停滞的核糖体诱导的连续内切核酸酶降解所降解。在这里,我们报道核糖体相关的Asc1 / RACK1是由dom34Δ突变细胞中mRNA的3'端停滞的核糖体进行不间断mRNA的内切核酸裂解所必需的。在不存在Dom34和外泌体依赖性衰变的情况下,Asc1 / RACK1促进了截短的GFP-Rz mRNA的降解。 Asc1 / RACK1是dom34Δ突变体中停滞的核糖体进行顺序核酸内切裂解所必需的,具体取决于其核糖体结合活性。在dom34Δasc1Δ突变细胞中,源自不间断mRNA的肽基-tRNA的水平升高,并且不间断mRNA的过量产生抑制了突变细胞的生长。 E3泛素连接酶Ltn1降解dom34Δ和dom34Δasc1Δ突变细胞中截短的GFP-Rz mRNA的阻滞产物,而Asc1 / RACK1抑制Ltn1依赖性降解的底物水平。这些表明核糖体相关的Asc1 / RACK1促进了停滞的核糖体对核酸酶的不间断性内切裂解,即使在没有Dom34的情况下也抑制了异常产物的水平。我们建议Asc1 / RACK1充当不间断mRNA的质量控制中的故障安全措施。

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