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De Geyter, C.

Publications and source records attributed to De Geyter, C..

3 recordsLinked to original sources

Single molecule footprinting measures low nucleosome occupancy in mature spermatozoa of mice and men

Nucleosomes are fundamental units of DNA packaging and gene regulation in eukaryotes. In mammalian sperm, most nucleosomes are replaced by protamines causing extreme chromatin compaction. Various epigenomic studies reported conflicting results on the distribution of residual nucleosomes in mammalian sperm1-9, questioning their potential role in mediating intergenerational inheritance of paternal epigenetic information10,11. Here we performed single-molecule footprinting through Nucleosome Occupancy and Methylome (NOMe) sequencing12 and applied the Bayesian statistical model nomeR13 to determine frequencies of nucleosome removal and retention at 103 specific genomic regions in thousands of developing haploid spermatids and mature spermatozoa of mice. While we readily detected footprints of nucleosomes and the transcription factor CTCF in round spermatids, chromatin became transiently highly accessible in elongating spermatids with loss of such footprints, indicating extensive chromatin reprogramming during spermiogenesis. In mature sperm, following nuclear decondensation with recombinant nucleoplasmin, we measured nucleosome occupancy frequencies ranging [~]1.2 to 1.7% at mouse loci. In human sperm, nucleosome occupancy varied between [~]2.3 to 4.5% at 163 genomic loci profiled. Contrasting mice, chromatin in [~]25% of human sperm was accessible upon reducing disulfide bonds between protamines arguing for species specific protamine packaging. Our findings support a stochastic rather than programmed potential role of residual nucleosomes in mammalian sperm in regulating paternal gene expression during ensuing embryonic development.

genomics↗

Levels of DNA accessibility in human sperm vary across individuals with differing reproductive parameters

Mammalian sperm DNA is packaged in a much denser form than in somatic cells, protecting the DNA from damage and reducing the size of the nucleus to improve passage towards the oocyte. While defective sperm DNA packaging correlates with reduced fertilization rates and impaired pre-implantation embryonic development, these defects are not currently examined in standard semen analysis. Here, we adapted NicE-view, an assay that directly labels accessible DNA, for use in human sperm and applied this method including extensive image quantification to examine spermatozoa from individuals with normal conventional semen parameters but variable reproductive outcomes. We found that two sub-populations of cells differing greatly in their DNA accessibility exist within both total and motile sperm. The frequencies of these two sub-populations vary between individuals, and selection of motile sperm by swim-up generally enriches for sperm with high DNA accessibility. Individuals with high frequencies of sperm with high DNA accessibility possess decreased sperm concentrations and increased DNA nicking levels and a subset of these individuals have a history of post-fertilization embryogenic failure. NicE-view shows much clearer separation of staining levels than alternative DNA labeling approaches, and represents a valuable tool for the assessment of human sperm.

molecular biology↗

FollicleFinder: automated three-dimensional segmentation of human ovarian follicles

In vitro fertilization (IVF) treatment protocols require frequent monitoring of the ovarian follicle growth process. We report FollicleFinder, an open source pipeline for the automated, 3D segmentation of ovarian follicles. FollicleFinder also accurately measures clinically-relevant morphological properties such as diameter, surface area, and volume. AvailabilityThe FollicleFinder pipeline is available at https://git.bsse.ethz.ch/iber/ovary-analysis and the graphical user interface is available at https://git.bsse.ethz.ch/iber/follicle-tracker.

bioinformatics↗