Changes in sub-cellular localisation of trophoblast and inner cell mass specific transcription factors during bovine preimplantation development

被引:40
作者
Madeja, Zofia E. [1 ]
Sosnowski, Jaroslaw [1 ]
Hryniewicz, Kamila [1 ]
Warzych, Ewelina [1 ]
Pawlak, Piotr [1 ]
Rozwadowska, Natalia [2 ]
Plusa, Berenika [3 ]
Lechniak, Dorota [1 ]
机构
[1] Poznan Univ Life Sci, Dept Genet & Anim Breeding, PL-60673 Poznan, Poland
[2] Polish Acad Sci, Inst Human Genet, Dept Reprod & Stem Cells, PL-60479 Poznan, Poland
[3] Univ Manchester, Fac Life Sci, Manchester, Lancs, England
关键词
Bovine blastocyst; ICM/TE lineage segregation; Cell fate; Gene expression patterns; CDX2; Mitotic retention; EMBRYONIC STEM-CELLS; EARLY MOUSE EMBRYO; IN-VITRO; GENE-EXPRESSION; MESSENGER-RNA; POSTHATCHING DEVELOPMENT; TROPHECTODERM LINEAGE; MAMMALIAN DEVELOPMENT; FATE SPECIFICATION; ALPHA-AMANITIN;
D O I
10.1186/1471-213X-13-32
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background: Preimplantation bovine development is emerging as an attractive experimental model, yet little is known about the mechanisms underlying trophoblast (TE)/inner cell mass (ICM) segregation in cattle. To gain an insight into these processes we have studied protein and mRNA distribution during the crucial stages of bovine development. Protein distribution of lineage specific markers OCT4, NANOG, CDX2 were analysed in 5-cell, 8-16 cell, morula and blastocyst stage embryos. ICM/TE mRNA levels were compared in hatched blastocysts and included: OCT4, NANOG, FN-1, KLF4, c-MYC, REX1, CDX2, KRT-18 and GATA6. Results: At the mRNA level the observed distribution patterns agree with the mouse model. CDX2 and OCT4 proteins were first detected in 5-cell stage embryos. NANOG appeared at the morula stage and was located in the cytoplasm forming characteristic rings around the nuclei. Changes in sub-cellular localisation of OCT4, NANOG and CDX2 were noted from the 8-16 cell onwards. CDX2 initially co-localised with OCT4, but at the blastocyst stage a clear lineage segregation could be observed. Interestingly, we have observed in a small proportion of embryos (2%) that CDX2 immunolabelling overlapped with mitotic chromosomes. Conclusions: Cell fate specification in cattle become evident earlier than presently anticipated - around the time of bovine embryonic genome activation. There is an intriguing possibility that for proper lineage determination certain transcription factors (such as CDX2) may need to occupy specific regions of chromatin prior to its activation in the interphase nucleus. Our observation suggests a possible role of CDX2 in the process of epigenetic regulation of embryonic cell fate.
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共 89 条
[1]   Conserved molecular portraits of bovine and human blastocysts as a consequence of the transition from maternal to embryonic control of gene expression [J].
Adjaye, James ;
Herwig, Ralf ;
Brink, Thore C. ;
Herrmann, Doris ;
Greber, Boris ;
Sudheer, Smita ;
Groth, Detlef ;
Carnwath, Joseph W. ;
Lehrach, Hans ;
Niemann, Heiner .
PHYSIOLOGICAL GENOMICS, 2007, 31 (02) :315-327
[2]  
AGHION J, 1994, J CELL SCI, V107, P1369
[3]   Multipotent cell lineages in early mouse development depend on SOX2 function [J].
Avilion, AA ;
Nicolis, SK ;
Pevny, LH ;
Perez, L ;
Vivian, N ;
Lovell-Badge, R .
GENES & DEVELOPMENT, 2003, 17 (01) :126-140
[4]   Trophectoderm Lineage Determination in Cattle [J].
Berg, Debra K. ;
Smith, Craig S. ;
Pearton, David J. ;
Wells, David N. ;
Broadhurst, Ric ;
Donnison, Martyn ;
Pfeffer, Peter L. .
DEVELOPMENTAL CELL, 2011, 20 (02) :244-255
[5]   Isolation and Culture of Primary Bovine Embryonic Stem Cell Colonies by a Novel Method [J].
Cao, Shanbo ;
Wang, Fang ;
Chen, Zhisheng ;
Liu, Zhong ;
Mei, Cheng ;
Wu, Haojia ;
Huang, Junjiu ;
Li, Chao ;
Zhou, Lingjun ;
Liu, Lin .
JOURNAL OF EXPERIMENTAL ZOOLOGY PART A-ECOLOGICAL GENETICS AND PHYSIOLOGY, 2009, 311A (05) :368-376
[6]   Oct-4 mRNA and protein expression during human preimplantation development [J].
Cauffman, G ;
Van de Velde, H ;
Liebaers, I ;
Van Steirteghem, A .
MOLECULAR HUMAN REPRODUCTION, 2005, 11 (03) :173-181
[7]   Functional expression cloning of Nanog, a pluripotency sustaining factor in embryonic stem cells [J].
Chambers, I ;
Colby, D ;
Robertson, M ;
Nichols, J ;
Lee, S ;
Tweedie, S ;
Smith, A .
CELL, 2003, 113 (05) :643-655
[8]   The transcriptional foundation of pluripotency [J].
Chambers, Ian ;
Tomlinson, Simon R. .
DEVELOPMENT, 2009, 136 (14) :2311-2322
[9]   Cross-regulation of the Nanog and Cdx2 promoters [J].
Chen, Lingyi ;
Yabuuchi, Akiko ;
Eminli, Sarah ;
Takeuchi, Ayumu ;
Lu, Chi-Wei ;
Hochedlinger, Konrad ;
Daley, George Q. .
CELL RESEARCH, 2009, 19 (09) :1052-1061
[10]   Molecular evidence for a critical period in mural trophoblast development in bovine blastocysts [J].
Degrelle, SA ;
Campion, E ;
Cabau, C ;
Piumi, F ;
Reinaud, P ;
Richard, C ;
Renard, JP ;
Hue, I .
DEVELOPMENTAL BIOLOGY, 2005, 288 (02) :448-460