Identification of transcriptional networks during liver regeneration

被引:101
作者
White, P
Brestelli, JE
Kaestner, KH
Greenbaum, LE
机构
[1] Univ Penn, Sch Med, Dept Med, Philadelphia, PA 19104 USA
[2] Univ Penn, Sch Med, Dept Med, Philadelphia, PA 19104 USA
关键词
D O I
10.1074/jbc.M410844200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The molecular analysis of mammalian cellular proliferation in vivo is limited in most organ systems by the low turnover and/or the asynchronous nature of cell cycle progression. A notable exception is the partial hepatectomy model, in which quiescent hepatocytes re-enter the cell cycle and progress in a synchronous fashion. Here we have exploited this model to identify regulatory networks operative in the mammalian cell cycle. We performed microarray-based expression profiling on livers 0-40 h post-hepatectomy corresponding to G(0), G(1), and S phases. Differentially expressed genes were identified using the statistical analysis program PaGE ((P) under bar(a) under bar tterns from (G) under bar ene (E) under bar xpression), which was highly accurate as confirmed by quantitative reverse transcription-PCR of randomly selected targets. A shift in the transcriptional program from genes involved in lipid and hormone biosynthesis in the quiescent liver to those contributing to cytoskeleton assembly and DNA synthesis in the proliferating liver was demonstrated by biological theme analysis. In a novel approach, we employed computational pathway analysis tools to identify specific regulatory networks operative at various stages of the cell cycle. This allowed us to identify a large cluster of genes controlling mitotic spindle assembly and checkpoint control at the 40-h time point as regulated at the mRNA level in vivo.
引用
收藏
页码:3715 / 3722
页数:8
相关论文
共 54 条
[1]   Chromosomal passengers and the (aurora) ABCs of mitosis [J].
Adams, RR ;
Carmena, M ;
Earnshaw, WC .
TRENDS IN CELL BIOLOGY, 2001, 11 (02) :49-54
[2]   Involvement of p21 and p27 in the regulation of CDK activity and cell cycle progression in the regenerating liver [J].
Albrecht, JH ;
Poon, RYC ;
Ahonen, CL ;
Rieland, BM ;
Deng, CX ;
Crary, GS .
ONCOGENE, 1998, 16 (16) :2141-2150
[3]   Regulation of cyclin-dependent kinase inhibitor p21(WAF1/Cip1/Sdi1) gene expression in hepatic regeneration [J].
Albrecht, JH ;
Meyer, AH ;
Hu, MY .
HEPATOLOGY, 1997, 25 (03) :557-563
[4]   Gene expression profiling reveals the mechanism and pathophysiology of mouse liver regeneration [J].
Arai, M ;
Yokosuka, O ;
Chiba, T ;
Imazeki, F ;
Kato, M ;
Hashida, J ;
Ueda, Y ;
Sugano, S ;
Hashimoto, K ;
Saisho, H ;
Takiguchi, M ;
Seki, N .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (32) :29813-29818
[5]   Gene Ontology: tool for the unification of biology [J].
Ashburner, M ;
Ball, CA ;
Blake, JA ;
Botstein, D ;
Butler, H ;
Cherry, JM ;
Davis, AP ;
Dolinski, K ;
Dwight, SS ;
Eppig, JT ;
Harris, MA ;
Hill, DP ;
Issel-Tarver, L ;
Kasarskis, A ;
Lewis, S ;
Matese, JC ;
Richardson, JE ;
Ringwald, M ;
Rubin, GM ;
Sherlock, G .
NATURE GENETICS, 2000, 25 (01) :25-29
[6]   The cellular geography of aurora kinases [J].
Carmena, M ;
Earnshaw, WC .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2003, 4 (11) :842-854
[7]  
*COMP BIOL INF LAB, 2004, ALL GEN
[8]   Liver failure and defective hepatocyte regeneration in interleukin-6-deficient mice [J].
Cressman, DE ;
Greenbaum, LE ;
DeAngelis, RA ;
Ciliberto, G ;
Furth, EE ;
Poli, V ;
Taub, R .
SCIENCE, 1996, 274 (5291) :1379-1383
[9]   An aminopeptidase, ARTS-1, is required for interleukin-6 receptor shedding [J].
Cui, XL ;
Rouhani, FN ;
Hawari, F ;
Levine, SJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (31) :28677-28685
[10]   Shedding of the type II IL-1 decoy receptor requires a multifunctional aminopeptidase, aminopeptidase regulator of TNF receptor type 1 shedding [J].
Cui, XL ;
Rouhani, FN ;
Hawari, F ;
Levine, SJ .
JOURNAL OF IMMUNOLOGY, 2003, 171 (12) :6814-6819