RNA-Seq defines novel genes, RNA processing patterns and enhancer maps for the early stages of nephrogenesis: Hox supergenes

被引:31
作者
Brunskill, Eric W. [1 ]
Potter, S. Steven [1 ]
机构
[1] Childrens Hosp, Med Ctr, Div Dev Biol, Cincinnati, OH USA
关键词
Kidney development; RNA-Seq; Hox genes; Renal vesicle; Cap mesenchyme; Induction; NONCODING RNAS; BRANCHING MORPHOGENESIS; ANTISENSE TRANSCRIPTION; PROGENITOR CELLS; NEPHRON NUMBER; URETERAL BUD; KIDNEY; EXPRESSION; CHROMATIN; REVEALS;
D O I
10.1016/j.ydbio.2012.05.030
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
During kidney development the cap mesenchyme progenitor cells both self renew and differentiate into nephrons. The balance between renewal and differentiation determines the final nephron count, which is of considerable medical importance. An important goal is to create a precise genetic definition of the early differentiation of cap mesenchyme progenitors. We used RNA-Seq to transcriptional profile the cap mesenchyme progenitors and their first epithelial derivative, the renal vesicles. The results provide a global view of the changing gene expression program during this key period, defining expression levels for all transcription factors, growth factors, and receptors. The RNA-Seq was performed using two different. biochemistries, with one examining only polyadenylated RNA and the other total RNA. This allowed the analysis of noncanonical transcripts, which for many genes were more abundant than standard exonic RNAs. Since a large fraction of enhancers are now known to be transcribed the results also provide global maps of potential enhancers. Further, the RNA-Seq data defined hundreds of novel splice patterns and large numbers of new genes. Particularly striking was the extensive sense/antisense transcription and changing RNA processing complexities of the Hox clusters. (C) 2012 Elsevier Inc. All rights reserved.
引用
收藏
页码:4 / 17
页数:14
相关论文
共 64 条
[1]   Identification and analysis of functional elements in 1% of the human genome by the ENCODE pilot project [J].
Birney, Ewan ;
Stamatoyannopoulos, John A. ;
Dutta, Anindya ;
Guigo, Roderic ;
Gingeras, Thomas R. ;
Margulies, Elliott H. ;
Weng, Zhiping ;
Snyder, Michael ;
Dermitzakis, Emmanouil T. ;
Stamatoyannopoulos, John A. ;
Thurman, Robert E. ;
Kuehn, Michael S. ;
Taylor, Christopher M. ;
Neph, Shane ;
Koch, Christoph M. ;
Asthana, Saurabh ;
Malhotra, Ankit ;
Adzhubei, Ivan ;
Greenbaum, Jason A. ;
Andrews, Robert M. ;
Flicek, Paul ;
Boyle, Patrick J. ;
Cao, Hua ;
Carter, Nigel P. ;
Clelland, Gayle K. ;
Davis, Sean ;
Day, Nathan ;
Dhami, Pawandeep ;
Dillon, Shane C. ;
Dorschner, Michael O. ;
Fiegler, Heike ;
Giresi, Paul G. ;
Goldy, Jeff ;
Hawrylycz, Michael ;
Haydock, Andrew ;
Humbert, Richard ;
James, Keith D. ;
Johnson, Brett E. ;
Johnson, Ericka M. ;
Frum, Tristan T. ;
Rosenzweig, Elizabeth R. ;
Karnani, Neerja ;
Lee, Kirsten ;
Lefebvre, Gregory C. ;
Navas, Patrick A. ;
Neri, Fidencio ;
Parker, Stephen C. J. ;
Sabo, Peter J. ;
Sandstrom, Richard ;
Shafer, Anthony .
NATURE, 2007, 447 (7146) :799-816
[2]   Phylogenetic analysis of Hoxa 11 sequences reveals absence of transposable elements, conservation of transcription factor binding sites, and suggests antisense coding function [J].
Bodenmiller, DM ;
Baxter, CS ;
Hansen, DV ;
Potter, SS .
DNA SEQUENCE, 2002, 13 (02) :77-83
[3]   Fate mapping using Cited1-CreERT2 mice demonstrates that the cap mesenchyme contains self-renewing progenitor cells and gives rise exclusively to nephronic epithelia [J].
Boyle, Scott ;
Misfeldt, Andrew ;
Chandler, Kelly J. ;
Deal, Karen K. ;
Southard-Smith, E. Michelle ;
Mortlock, Douglas P. ;
Baldwin, H. Scott ;
de Caestecker, Mark .
DEVELOPMENTAL BIOLOGY, 2008, 313 (01) :234-245
[4]   Atlas of Gene Expression in the Developing Kidney at Microanatomic Resolution [J].
Brunskill, Eric W. ;
Aronow, Bruce J. ;
Georgas, Kylie ;
Rumballe, Bree ;
Valerius, M. Todd ;
Aronow, Jeremy ;
Kaimal, Vivek ;
Jegga, Anil G. ;
Grimmond, Sean ;
McMahon, Andrew P. ;
Patterson, Larry T. ;
Little, Melissa H. ;
Potter, S. Steven .
DEVELOPMENTAL CELL, 2008, 15 (05) :781-791
[5]   Microarrays and RNA-Seq identify molecular mechanisms driving the end of nephron production [J].
Brunskill, Eric W. ;
Lai, Hsiao L. ;
Jamison, D. Curtis ;
Potter, S. Steven ;
Patterson, Larry T. .
BMC DEVELOPMENTAL BIOLOGY, 2011, 11
[6]   An intron 9 containing splice variant of PAX2 [J].
Busse, Antonia ;
Rietz, Anika ;
Schwartz, Stefan ;
Thiel, Eckhard ;
Keilholz, Ulrich .
JOURNAL OF TRANSLATIONAL MEDICINE, 2009, 7
[7]   Wnt9b plays a central role in the regulation of mesenchymal to epithelial transitions underlying organogenesis of the mammalian urogenital system [J].
Carroll, TJ ;
Park, JS ;
Hayashi, S ;
Majumdar, A ;
McMahon, AP .
DEVELOPMENTAL CELL, 2005, 9 (02) :283-292
[8]   Limb and kidney defects in Lmx1b mutant mice suggest an involvement of LMX1B in human nail patella syndrome [J].
Chen, H ;
Lun, Y ;
Ovchinnikov, D ;
Kokubo, H ;
Oberg, KC ;
Pepicelli, CV ;
Gan, L ;
Lee, B ;
Johnson, RL .
NATURE GENETICS, 1998, 19 (01) :51-55
[9]   Tshz1 is required for axial skeleton, soft palate and middle ear development in mice [J].
Core, Nathalie ;
Caubit, Xavier ;
Metchat, Aiecha ;
Boned, Annie ;
Djabali, Malek ;
Fasano, Laurent .
DEVELOPMENTAL BIOLOGY, 2007, 308 (02) :407-420
[10]   Patterning a Complex Organ: Branching Morphogenesis and Nephron Segmentation in Kidney Development [J].
Costantini, Frank ;
Kopan, Raphael .
DEVELOPMENTAL CELL, 2010, 18 (05) :698-712