Javascript must be enabled to continue!
Differential degradation of RNA species by autophagy-related pathways in Arabidopsis
View through CrossRef
Abstract
The plant vacuole recycles proteins and RNA delivered to it by autophagy. In this study, by isolating intact vacuoles from Arabidopsis plants, followed by subsequent RNA purification, and deep sequencing, we provide a comprehensive characterization of Arabidopsis vacuolar RNAome. In the vacuolar RNAome, we detected ribosomal RNAs, transfer RNAs, including those of chloroplast origin, and in addition small RNA types. As autophagy is a main mechanism for the transport of RNA to the vacuole, atg5-1 mutants deficient in autophagy were included in our analysis. We observed severely reduced amounts of most chloroplast-derived RNA species in these mutants. Comparisons with cellular RNA composition provided an indication of possible up-regulation of alternative RNA breakdown pathways. By contrast, vacuolar RNA processing and composition in plants lacking vacuolar ribonuclease 2, involved in cellular RNA homeostasis, only showed minor alterations, possibly because of the presence of further so far unknown vacuolar RNase species. Among the small RNA types, we detected mature miRNAs in all vacuolar preparations but at much lower frequency in atg5-1, raising the possibility of a biological role for vacuolar miRNAs.
Title: Differential degradation of RNA species by autophagy-related pathways in Arabidopsis
Description:
Abstract
The plant vacuole recycles proteins and RNA delivered to it by autophagy.
In this study, by isolating intact vacuoles from Arabidopsis plants, followed by subsequent RNA purification, and deep sequencing, we provide a comprehensive characterization of Arabidopsis vacuolar RNAome.
In the vacuolar RNAome, we detected ribosomal RNAs, transfer RNAs, including those of chloroplast origin, and in addition small RNA types.
As autophagy is a main mechanism for the transport of RNA to the vacuole, atg5-1 mutants deficient in autophagy were included in our analysis.
We observed severely reduced amounts of most chloroplast-derived RNA species in these mutants.
Comparisons with cellular RNA composition provided an indication of possible up-regulation of alternative RNA breakdown pathways.
By contrast, vacuolar RNA processing and composition in plants lacking vacuolar ribonuclease 2, involved in cellular RNA homeostasis, only showed minor alterations, possibly because of the presence of further so far unknown vacuolar RNase species.
Among the small RNA types, we detected mature miRNAs in all vacuolar preparations but at much lower frequency in atg5-1, raising the possibility of a biological role for vacuolar miRNAs.
Related Results
Detecting RNA–RNA interactome
Detecting RNA–RNA interactome
AbstractThe last decade has seen a robust increase in various types of novel RNA molecules and their complexity in gene regulation. RNA molecules play a critical role in cellular e...
DOP68 Autophagy induction in the intestinal epithelium protects against inflammation-induced barrier loss in vivo.
DOP68 Autophagy induction in the intestinal epithelium protects against inflammation-induced barrier loss in vivo.
Abstract
Background
Loss of the paracellular tight junction (TJ) barrier and defective autophagy in the gut are pathogenic facto...
Prognostic Significance of Autophagy-Relevant Gene Markers in Colorectal Cancer
Prognostic Significance of Autophagy-Relevant Gene Markers in Colorectal Cancer
BackgroundColorectal cancer (CRC) is a common malignant solid tumor with an extremely low survival rate after relapse. Previous investigations have shown that autophagy possesses a...
Abstract 2323: Deciphering RNA degradation: Insights from a comparative analysis of paired fresh frozen/FFPE total RNA-seq
Abstract 2323: Deciphering RNA degradation: Insights from a comparative analysis of paired fresh frozen/FFPE total RNA-seq
Abstract
Background: Fresh frozen (FF) and formalin-fixed paraffin-embedded (FFPE) samples are primary resources for archival tissues in cancer studies. Despite the ...
Abstract 1674: Inhibition of GSK3 reduces p70S6K activity and promotes autophagy independently of the JNK-cJun pathway.
Abstract 1674: Inhibition of GSK3 reduces p70S6K activity and promotes autophagy independently of the JNK-cJun pathway.
Abstract
Considering that a tumor promoting role for GSK3 has been suggested in pancreatic cancer (PC) cells and that GSK3 inhibitors are currently under clinical tr...
Data from Autophagy Supports Breast Cancer Stem Cell Maintenance by Regulating IL6 Secretion
Data from Autophagy Supports Breast Cancer Stem Cell Maintenance by Regulating IL6 Secretion
<div>Abstract<p>Autophagy is a mechanism by which cells degrade cellular material to provide nutrients and energy for survival during stress. The autophagy is thought t...
Data from Autophagy Supports Breast Cancer Stem Cell Maintenance by Regulating IL6 Secretion
Data from Autophagy Supports Breast Cancer Stem Cell Maintenance by Regulating IL6 Secretion
<div>Abstract<p>Autophagy is a mechanism by which cells degrade cellular material to provide nutrients and energy for survival during stress. The autophagy is thought t...

