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酿酒酵母 myo1Δ 突变体中的转录后调控。

Post-transcriptional regulation in the myo1Δ mutant of Saccharomyces cerevisiae.

机构信息

Department of Biochemistry, School of Medicine, Medical Sciences Campus, University of Puerto Rico, PO Box 365067, San Juan, PR 00936-5067, USA.

出版信息

BMC Genomics. 2010 Dec 2;11:690. doi: 10.1186/1471-2164-11-690.

Abstract

BACKGROUND

Saccharomyces cerevisiae myosin type II-deficient (myo1Δ) strains remain viable and divide, despite the absence of a cytokinetic ring, by activation of the PKC1-dependent cell wall integrity pathway (CWIP). Since the myo1Δ transcriptional fingerprint is a subset of the CWIP fingerprint, the myo1Δ strain may provide a simplified paradigm for cell wall stress survival.

RESULTS

To explore the post-transcriptional regulation of the myo1Δ stress response, 1,301 differentially regulated ribosome-bound mRNAs were identified by microarray analysis of which 204 were co-regulated by transcription and translation. Four categories of mRNA were significantly affected - protein biosynthesis, metabolism, carbohydrate metabolism, and unknown functions. Nine genes of the 20 CWIP fingerprint genes were post-transcriptionally regulated. Down and up regulation of selected ribosomal protein and cell wall biosynthesis mRNAs was validated by their distribution in polysomes from wild type and myo1Δ strains. Western blot analysis revealed accumulation of the phosphorylated form of eukaryotic translation initiation factor 2 (eIF2α-P) and a reduction in the steady state levels of the translation initiation factor eIF4Gp in myo1Δ strains. Deletion of GCN2 in myo1Δ abolished eIF2αp phosphorylation, and showed a severe growth defect. The presence of P-bodies in myo1Δ strains suggests that the process of mRNA sequestration is active, however, the three representative down regulated RP mRNAs, RPS8A, RPL3 and RPL7B were present at equivalent levels in Dcp2p-mCh-positive immunoprecipitated fractions from myo1Δ and wild type cells. These same RP mRNAs were also selectively co-precipitated with eIF2α-P in myo1Δ strains.

CONCLUSIONS

Quantitative analysis of ribosome-associated mRNAs and their polyribosome distributions suggests selective regulation of mRNA translation efficiency in myo1Δ strains. Inhibition of translation initiation factor eIF2α (eIF2α-P) in these strains was by Gcn2p-dependent phosphorylation. The increase in the levels of eIF2α-P; the genetic interaction between GCN2 and MYO1; and the reduced levels of eIF4Gp suggest that other signaling pathways, in addition to the CWIP, may be important for myo1Δ strain survival. Selective co-immunoprecipitation of RP mRNAs with eIF2α-P in myo1Δ strains suggests a novel mode of translational regulation. These results indicate that post-transcriptional control is important in the myo1Δ stress response and possibly other stresses in yeast.

摘要

背景

酿酒酵母肌球蛋白 II 缺陷型(myo1Δ)菌株在没有细胞分裂环的情况下仍然能够存活和分裂,这是通过激活依赖 PKC1 的细胞壁完整性途径(CWIP)实现的。由于 myo1Δ 的转录指纹是 CWIP 指纹的一个子集,因此 myo1Δ 菌株可能为细胞壁应激存活提供了一个简化的范例。

结果

为了探索 myo1Δ 应激反应的转录后调控,通过微阵列分析鉴定了 1301 个差异调节的核糖体结合 mRNA,其中 204 个受转录和翻译共同调节。受显著影响的 mRNA 分为四类——蛋白质生物合成、代谢、碳水化合物代谢和未知功能。20 个 CWIP 指纹基因中有 9 个受转录后调控。从野生型和 myo1Δ 菌株的多核糖体中选择核糖体蛋白和细胞壁生物合成 mRNA 的分布进行了验证。Western blot 分析显示,myo1Δ 菌株中真核翻译起始因子 2(eIF2α-P)的磷酸化形式积累,而翻译起始因子 eIF4Gp 的稳态水平降低。在 myo1Δ 中缺失 GCN2 可消除 eIF2αp 的磷酸化,并导致严重的生长缺陷。myo1Δ 菌株中 P 体的存在表明 mRNA 隔离过程是活跃的,然而,三个代表性下调的 RP mRNA(RPS8A、RPL3 和 RPL7B)在 myo1Δ 和野生型细胞的 Dcp2p-mCh 阳性免疫沉淀部分中存在等效水平。这些相同的 RP mRNA 也选择性地与 myo1Δ 菌株中的 eIF2α-P 共沉淀。

结论

对核糖体相关 mRNA 及其多核糖体分布的定量分析表明,myo1Δ 菌株中 mRNA 翻译效率受到选择性调节。这些菌株中翻译起始因子 eIF2α(eIF2α-P)的抑制是通过 Gcn2p 依赖性磷酸化实现的。eIF2α-P 水平的增加;GCN2 和 MYO1 之间的遗传相互作用;以及 eIF4Gp 水平的降低表明,除了 CWIP 之外,其他信号通路可能对 myo1Δ 菌株的存活很重要。在 myo1Δ 菌株中,RP mRNA 与 eIF2α-P 的选择性共免疫沉淀表明存在一种新的翻译调控模式。这些结果表明,转录后调控在 myo1Δ 应激反应中和酵母中的其他应激中很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/602c/3017085/fb8514b487dc/1471-2164-11-690-1.jpg

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