TY - JOUR
T1 - A multiplex RNA-seq strategy to profile poly(A +) RNA
T2 - Application to analysis of transcription response and 3' end formation
AU - Fox-Walsh, Kristi
AU - Davis-Turak, Jeremy
AU - Zhou, Yu
AU - Li, Hairi
AU - Fu, Xiang Dong
PY - 2011/10
Y1 - 2011/10
N2 - RNA-seq technologies are now replacing microarrays for profiling gene expression. Here we describe a robust RNA-seq strategy for multiplex analysis of RNA samples based on deep sequencing. First, an oligo-dT linked to an adaptor sequence is used to prime cDNA synthesis. Upon solid phase selection, second strand synthesis is initiated using a random primer linked to another adaptor sequence. Finally, the library is released from the beads and amplified using a bar-coded primer together with a common primer. This method, referred to as Multiplex Analysis of PolyA-linked Sequences (MAPS), preserves strand information, permits rapid identification of potentially new polyadenylation sites, and profiles gene expression in a highly cost effective manner. We have applied this technology to determine the transcriptome response to knockdown of the RNA binding protein TLS, and compared the result to current microarray technology, demonstrating the ability of MAPS to robustly detect regulated gene expression.
AB - RNA-seq technologies are now replacing microarrays for profiling gene expression. Here we describe a robust RNA-seq strategy for multiplex analysis of RNA samples based on deep sequencing. First, an oligo-dT linked to an adaptor sequence is used to prime cDNA synthesis. Upon solid phase selection, second strand synthesis is initiated using a random primer linked to another adaptor sequence. Finally, the library is released from the beads and amplified using a bar-coded primer together with a common primer. This method, referred to as Multiplex Analysis of PolyA-linked Sequences (MAPS), preserves strand information, permits rapid identification of potentially new polyadenylation sites, and profiles gene expression in a highly cost effective manner. We have applied this technology to determine the transcriptome response to knockdown of the RNA binding protein TLS, and compared the result to current microarray technology, demonstrating the ability of MAPS to robustly detect regulated gene expression.
KW - Gene expression profiling
KW - Multiplexing strategy
KW - RNA-seq
KW - Translocation-in-liposarcoma
UR - https://www.scopus.com/pages/publications/80053337976
U2 - 10.1016/j.ygeno.2011.04.003
DO - 10.1016/j.ygeno.2011.04.003
M3 - 文章
C2 - 21515359
AN - SCOPUS:80053337976
SN - 0888-7543
VL - 98
SP - 266
EP - 271
JO - Genomics
JF - Genomics
IS - 4
ER -