Literature DB >> 32070197

Extracellular tRNAs and tRNA-derived fragments.

Juan Pablo Tosar1,2, Alfonso Cayota2,3.   

Abstract

Fragmentation of tRNAs generates a family of small RNAs collectively known as tRNA-derived fragments. These fragments vary in sequence and size but have been shown to regulate many processes involved in cell homoeostasis and adaptations to stress. Additionally, the field of extracellular RNAs (exRNAs) is rapidly growing because exRNAs are a promising source of biomarkers in liquid biopsies, and because exRNAs seem to play key roles in intercellular and interspecies communication. Herein, we review recent descriptions of tRNA-derived fragments in the extracellular space in all domains of life, both in biofluids and in cell culture. The purpose of this review is to find consensus on which tRNA-derived fragments are more prominent in each extracellular fraction (including extracellular vesicles, lipoproteins and ribonucleoprotein complexes). We highlight what is becoming clear and what is still controversial in this field, in order to stimulate future hypothesis-driven studies which could clarify the role of full-length tRNAs and tRNA-derived fragments in the extracellular space.

Entities:  

Keywords:  Exosomes; intercellular communication; tRFs; tRNA halves

Mesh:

Substances:

Year:  2020        PMID: 32070197      PMCID: PMC7549618          DOI: 10.1080/15476286.2020.1729584

Source DB:  PubMed          Journal:  RNA Biol        ISSN: 1547-6286            Impact factor:   4.652


  170 in total

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3.  The landscape of microRNA, Piwi-interacting RNA, and circular RNA in human saliva.

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4.  Plant Extracellular Vesicles Contain Diverse Small RNA Species and Are Enriched in 10- to 17-Nucleotide "Tiny" RNAs.

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5.  Stress induces tRNA cleavage by angiogenin in mammalian cells.

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6.  Endogenous tRNA-Derived Fragments Suppress Breast Cancer Progression via YBX1 Displacement.

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  21 in total

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9.  Transfer RNAs: diversity in form and function.

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