Expression of 11 Members of the BCL-2 Family of Apoptosis Regulatory Molecules during Human Preimplantation Embryo Development and Fragmentation

Anthony D. Metcalfe, Helen R. Hunter, Debra J. Bloor, Brian A. Lieberman, Helen M. Picton, Henry J. Leese, Susan J. Kimber, Daniel R. Brison*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

85 Citations (Scopus)

Abstract

Apoptosis during preimplantation development has received much interest because of its potential role in eliminating defective cells. Although development in humans is characterised by a high degree of genetic abnormality, little is known of the regulation of apoptosis in embryos. By PolyA PCR we analysed expression of 11 BCL-2 genes in individual human embryos representative of normal development and in severely fragmented embryos. We demonstrate constitutive expression of BAX in virtually all embryos at all stages of development, and variable expression of BCL2, BCL-XL, BCL-W, MCL-1 BAK, BAD, BOKL, BID, BIK, and BCL-XS. The frequency of expression of pro- and anti-apoptotic BCL-2 members was similar throughout development, except at the two-cell stage where pro-apoptotic genes predominated. Protein expression was confirmed for BCL-2, MCL-1, BCL-X, BAX, BAD, and activated caspase 3. BCL-2 protein was associated with mitochondria but expressed inconsistently in the blastocyst inner cell mass. Consistent differences between morphologically intact and fragmented embryos included the expression of BAK in fragmented but not intact four-cell embryos. Our study addresses the importance of examining single human embryos representative of the viable population for a large number of genes, in order to establish meaningful expression profiles and provide information on overlapping function in a large gene family.

Original languageEnglish
Pages (from-to)35-50
Number of pages16
JournalMolecular Reproduction and Development
Volume68
Issue number1
DOIs
Publication statusPublished - 1 May 2004

Keywords

  • BCL-2
  • Embryo
  • Human
  • PolyA PCR
  • Preimplantation

ASJC Scopus subject areas

  • Genetics
  • Developmental Biology
  • Cell Biology

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