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Home › Dataset Library › The ubiquitin-conjugating enzyme HR6B is required for maintenance of X chromosome silencing in mouse spermatocytes and spermatids

Dataset: The ubiquitin-conjugating enzyme HR6B is required for maintenance of X chromosome silencing in mouse spermatocytes and spermatids

Background: The ubiquitin-conjugating enzyme HR6B is required for spermatogenesis in mouse. Loss of HR6B results in aberrant histone...

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Background: The ubiquitin-conjugating enzyme HR6B is required for spermatogenesis in mouse. Loss of HR6B results in aberrant histone modification patterns on the trancriptionally silenced X and Y chromosomes (XY body) and on centromeric chromatin in meiotic prophase. We studied the relationship between these chromatin modifications and their effects on global gene expression patterns, in spermatocytes and spermatids. Results: HR6B is enriched on the XY body and on centromeric regions in pachytene spermatocytes. Global gene expression analyses revealed that spermatid-specific single- and multicopy X-linked genes are prematurely expressed in Hr6b knockout spermatocytes. Very few other differences in gene expression were observed in these cells, except for upregulation of major satellite repeat transcription. In contrast, in Hr6b knockout spermatids, 7298 genes were differentially expressed; 65% of these genes was downregulated, but we observed a global upregulation of gene transcription from the X chromosome. In wildtype spermatids, approximately 20% of the single-copy X-linked genes reach an average expression level that is similar to the average expression from autosomes. Conclusions: Spermatids maintain an enrichment of repressive chromatin marks on the X chromosome, originating from meiotic prophase, but this does not interfere with transcription of the single-copy X-linked genes that are reactivated or specifically activated in spermatids. HR6B represses major satellite repeat transcription in spermatocytes, and functions in the maintenance of X chromosome silencing in spermatocytes and spermatids. It is discussed that these functions involve modification of chromatin structure, possibly including H2B ubiquitylation. 8 Affymetrix microarrays were generated: 4 from wildtype and HR6B knockout spermatocytes (2 replicates each), and 4 from wildtype and HR6B knockout spermatids (2 replicates each).

Species:
mouse

Samples:
8

Source:
E-GEOD-21749

Updated:
Dec.12, 2014

Registered:
Nov.11, 2014


Factors: (via ArrayExpress)
Sample GENOTYPE CELL TYPE
GSM542304 Hr6b-/- late spermatocyte
GSM542304 Hr6b-/- late spermatocyte
GSM542306 Hr6b+/+ late spermatocyte
GSM542306 Hr6b+/+ late spermatocyte
GSM542308 Hr6b-/- round spermatid
GSM542308 Hr6b-/- round spermatid
GSM542310 Hr6b+/+ round spermatid
GSM542310 Hr6b+/+ round spermatid

Tags

  • body
  • chromatin
  • chromosome
  • histone
  • spermatid
  • x chromosome

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