Unknown,Transcriptomics,Genomics,Proteomics

Dataset Information

0

Next generation sequencing identifies discrete classes of box C/D snoRNAs featuring different ends and RNA binding protein dependency


ABSTRACT: The paired-end next-generation sequencing of all small RNAs of less than 200 nucleotides in length from four different human cell lines (SKOV3ip1, MCF-7, BJ-Tielf, INOF) allowed us to determine the exact sequence(s) and variations of human box C/D snoRNAs (small nucleolar RNAs), revealing processing patterns of this class of molecules. Two distinct groups of box C/D snoRNAs were identified based on the position of their ends with respect to their characteristic boxes and the terminal base pairing potential. Short box C/D snoRNAs start sharply 4 or 5 nucleotides upstream of their box C and end 2 or 3 nucleotides downstream of their box D. In contrast, long box C/D snoRNAs start 5 or 6 nucleotides upstream of their box C and end 4 or 5 nucleotides downstream of their box D, increasing the likelihood of formation of a k-turn between their boxes C and D. Sequencing of SKOV3ip1 cells following the depletions of NOP58, a core box C/D snoRNA-binding protein and of RBFOX2, a splicing factor, shows that the short box C/D snoRNA forms are significantly more affected by the depletion of RBFOX2 while the long snoRNA forms, which display more canonical box C/D snoRNA features, are significantly more affected by the depletion of NOP58. Together the data suggest that box C/D snoRNAs are divided into at least two groups of RNA with distinct maturation and functional preferences. Small RNAs (<200 nucleotides) were isolated from different human cell lines that were either untreated or depleted of NOP58 or RBFOX2 using specific siRNAs. The resulting libraries were multiplexed and paired-end sequenced using Illumina HiSeq.

ORGANISM(S): Homo sapiens

SUBMITTER: Michelle Scott 

PROVIDER: E-GEOD-55946 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

altmetric image

Publications

Identification of discrete classes of small nucleolar RNA featuring different ends and RNA binding protein dependency.

Deschamps-Francoeur Gabrielle G   Garneau Daniel D   Dupuis-Sandoval Fabien F   Roy Audrey A   Frappier Marie M   Catala Mathieu M   Couture Sonia S   Barbe-Marcoux Mélissa M   Abou-Elela Sherif S   Scott Michelle S MS  

Nucleic acids research 20140729 15


Small nucleolar RNAs (snoRNAs) are among the first discovered and most extensively studied group of small non-coding RNA. However, most studies focused on a small subset of snoRNAs that guide the modification of ribosomal RNA. In this study, we annotated the expression pattern of all box C/D snoRNAs in normal and cancer cell lines independent of their functions. The results indicate that C/D snoRNAs are expressed as two distinct forms differing in their ends with respect to boxes C and D and in  ...[more]

Similar Datasets

2014-07-01 | GSE55946 | GEO
2013-05-08 | E-GEOD-43666 | biostudies-arrayexpress
2013-05-08 | GSE43666 | GEO
2018-04-23 | GSE93240 | GEO
2017-06-20 | GSE80579 | GEO
2020-07-09 | GSE139812 | GEO
2020-07-09 | GSE140622 | GEO
2020-07-09 | GSE140618 | GEO
2017-06-20 | GSE80523 | GEO
2013-03-26 | E-GEOD-41164 | biostudies-arrayexpress