Department of Cell Biology, School of Biological Sciences and Biotechnology, Indian Institute of Advanced Research, Gandhinagar, India.
PLoS One. 2012;7(9):e44873. doi: 10.1371/journal.pone.0044873. Epub 2012 Sep 11.
Mitochondria are one of the central regulators of many cellular processes beyond its well established role in energy metabolism. The inter-organellar crosstalk is critical for the optimal function of mitochondria. Many nuclear encoded proteins and RNA are imported to mitochondria. The translocation of small RNA (sRNA) including miRNA to mitochondria and other sub-cellular organelle is still not clear. We characterized here sRNA including miRNA associated with human mitochondria by cellular fractionation and deep sequencing approach. Mitochondria were purified from HEK293 and HeLa cells for RNA isolation. The sRNA library was generated and sequenced using Illumina system. The analysis showed the presence of unique population of sRNA associated with mitochondria including miRNA. Putative novel miRNAs were characterized from unannotated sRNA sequences. The study showed the association of 428 known, 196 putative novel miRNAs to mitochondria of HEK293 and 327 known, 13 putative novel miRNAs to mitochondria of HeLa cells. The alignment of sRNA to mitochondrial genome was also studied. The targets were analyzed using DAVID to classify them in unique networks using GO and KEGG tools. Analysis of identified targets showed that miRNA associated with mitochondria regulates critical cellular processes like RNA turnover, apoptosis, cell cycle and nucleotide metabolism. The six miRNAs (counts >1000) associated with mitochondria of both HEK293 and HeLa were validated by RT-qPCR. To our knowledge, this is the first systematic study demonstrating the associations of sRNA including miRNA with mitochondria that may regulate site-specific turnover of target mRNA important for mitochondrial related functions.
线粒体是许多细胞过程的核心调节剂之一,其在能量代谢中的作用已得到充分证实。细胞器间的串扰对于线粒体的最佳功能至关重要。许多核编码蛋白和 RNA 被导入线粒体。小分子 RNA(sRNA)包括 miRNA 向线粒体和其他亚细胞细胞器的转运尚不清楚。我们通过细胞分级分离和深度测序方法,对与人线粒体相关的 sRNA(包括 miRNA)进行了特征描述。从 HEK293 和 HeLa 细胞中分离出线粒体进行 RNA 分离。使用 Illumina 系统生成并测序 sRNA 文库。分析表明,与线粒体相关的 sRNA(包括 miRNA)存在独特的群体。从未注释的 sRNA 序列中鉴定出假定的新 miRNA。该研究表明,428 个已知的、196 个假定的新 miRNA 与 HEK293 的线粒体相关,327 个已知的、13 个假定的新 miRNA 与 HeLa 细胞的线粒体相关。还研究了 sRNA 与线粒体基因组的比对。使用 DAVID 分析将靶标分类到使用 GO 和 KEGG 工具的独特网络中。对鉴定出的靶标的分析表明,与线粒体相关的 miRNA 调节关键的细胞过程,如 RNA 周转、细胞凋亡、细胞周期和核苷酸代谢。与 HEK293 和 HeLa 线粒体相关的六种 miRNA(计数>1000)通过 RT-qPCR 进行了验证。据我们所知,这是首次系统研究表明 sRNA(包括 miRNA)与线粒体的关联可能调节与线粒体相关功能相关的特定位置的靶 mRNA 的特异性周转。