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Analysis of Translation Initiation During Stress Conditions by Polysome Profiling
Published on: May 19, 2014
Genome-wide identification and quantitative analysis of cleaved tRNA fragments induced by cellular stress
Mridusmita Saikia1, Dawid Krokowski, Bo-Jhih Guan
1Department of Nutrition, Case Western Reserve University, Cleveland, Ohio 44106, USA. mxs945@case.edu
Abstract:
Certain stress conditions can induce cleavage of tRNAs around the anticodon loop via the use of the ribonuclease angiogenin. The cellular factors that regulate tRNA cleavage are not well known. In this study we used normal and eIF2α phosphorylation-deficient mouse embryonic fibroblasts and applied a microarray-based methodology to identify and compare tRNA cleavage patterns in response to hypertonic stress, oxidative stress (arsenite), and treatment with recombinant angiogenin. In all three scenarios mouse embryonic fibroblasts deficient in eIF2α phosphorylation showed a higher accumulation of tRNA fragments including those derived from initiator-tRNA(Met). We have shown that tRNA cleavage is regulated by the availability of angiogenin, its substrate (tRNA), the levels of the angiogenin inhibitor RNH1, and the rates of protein synthesis. These conclusions are supported by the following findings: (i) exogenous treatment with angiogenin or knockdown of RNH1 increased tRNA cleavage; (ii) tRNA fragment accumulation was higher during oxidative stress than hypertonic stress, in agreement with a dramatic decrease of RNH1 levels during oxidative stress; and (iii) a positive correlation was observed between angiogenin-mediated tRNA cleavage and global protein synthesis rates. Identification of the stress-specific tRNA cleavage mechanisms and patterns will provide insights into the role of tRNA fragments in signaling pathways and stress-related disorders.
Insights
Cellular stress triggers tRNA cleavage by angiogenin. This study identifies key regulators like eIF2α phosphorylation, angiogenin availability, and protein synthesis rates, revealing insights into stress responses.
Area of Science:
- Molecular Biology
- Cellular Stress Response
- RNA Biology
Background:
- Stress conditions can induce tRNA cleavage by angiogenin.
- Cellular factors regulating tRNA cleavage are not well understood.
Purpose of the Study:
- To identify and compare tRNA cleavage patterns under different stress conditions.
- To investigate the role of eIF2α phosphorylation in tRNA cleavage regulation.
- To elucidate the factors controlling tRNA cleavage.
Main Methods:
- Utilized microarray-based methodology.
- Employed normal and eIF2α phosphorylation-deficient mouse embryonic fibroblasts.
- Applied hypertonic stress, oxidative stress (arsenite), and recombinant angiogenin treatment.
Main Results:
- eIF2α phosphorylation-deficient cells showed higher tRNA fragment accumulation.
- Oxidative stress led to greater tRNA cleavage than hypertonic stress.
- TRNA cleavage correlated positively with protein synthesis rates and inversely with RNH1 levels.
Conclusions:
- TRNA cleavage is regulated by angiogenin, tRNA availability, RNH1 levels, and protein synthesis rates.
- Stress-specific tRNA cleavage mechanisms involve angiogenin and its inhibitor RNH1.
- Understanding tRNA cleavage provides insights into stress-related disorders.
