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Regulated capture by exosomes of mRNAs for cytoplasmic tRNA synthetases.


ABSTRACT: Although tRNA synthetases are enzymes that catalyze the first step of translation in the cytoplasm, surprising functions unrelated to translation have been reported. These studies, and the demonstration of novel activities of splice variants, suggest a far broader reach of tRNA synthetases into cell biology than previously recognized. Here we show that mRNAs for most tRNA synthetases can be detected in exosomes. Also detected in exosomes was an mRNA encoding a unique splice variant that others had associated with prostate cancer. The exosomal mRNAs encoding the native synthetase and its cancer-associated splice variant could be translated in vitro and in mammalian cells into stable proteins. Other results showed that selection by exosomes of the splice variant mRNA could be regulated by an external stimulus. Thus, a broad and diverse regulated pool of tRNA synthetase-derived mRNAs is packaged for genetic exchange.

SUBMITTER: Wang F 

PROVIDER: S-EPMC3795223 | biostudies-literature | 2013 Oct

REPOSITORIES: biostudies-literature

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Regulated capture by exosomes of mRNAs for cytoplasmic tRNA synthetases.

Wang Feng F   Xu Zhiwen Z   Zhou Jie J   Lo Wing-Sze WS   Lau Ching-Fun CF   Nangle Leslie A LA   Yang Xiang-Lei XL   Zhang Mingjie M   Schimmel Paul P  

The Journal of biological chemistry 20130903 41


Although tRNA synthetases are enzymes that catalyze the first step of translation in the cytoplasm, surprising functions unrelated to translation have been reported. These studies, and the demonstration of novel activities of splice variants, suggest a far broader reach of tRNA synthetases into cell biology than previously recognized. Here we show that mRNAs for most tRNA synthetases can be detected in exosomes. Also detected in exosomes was an mRNA encoding a unique splice variant that others h  ...[more]

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