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Open AccessJournal ArticleDOI

Sperm nuclear proteome and its epigenetic potential.

TLDR
The analyses suggest that the mammalian sperm cell delivers to the offspring a rich combination of histone variants, transcription factors, Chromatin‐associated and chromatin‐modifying proteins which have the potential to encode and transmit an extremely complex epigenetic information.
Abstract
The main function of the sperm cell is to transmit the paternal genetic message and epigenetic information to the embryo. Importantly, the majority of the genes in the sperm chromatin are highly condensed by protamines, whereas genes potentially needed in the initial stages of development are associated with histones, representing a form of epigenetic marking. However, so far little attention has been devoted to other sperm chromatin-associated proteins that, in addition to histones and protamines, may also have an epigenetic role. Therefore, with the goal of contributing to cover this subject we have compiled, reviewed and report a list of 581 chromatin or nuclear proteins described in the human sperm cell. Furthermore, we have analysed their Gene Ontology Biological Process enriched terms and have grouped them into different functional categories. Remarkably, we show that 56% of the sperm nuclear proteins have a potential epigenetic activity, being involved in at least one of the following functions: chromosome organization, chromatin organization, protein-DNA complex assembly, DNA packaging, gene expression, transcription, chromatin modification and histone modification. In addition, we have also included and compared the sperm cell proteomes of different model species, demonstrating the existence of common trends in the chromatin composition in the mammalian mature male gamete. Taken together, our analyses suggest that the mammalian sperm cell delivers to the offspring a rich combination of histone variants, transcription factors, chromatin-associated and chromatin-modifying proteins which have the potential to encode and transmit an extremely complex epigenetic information.

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Journal ArticleDOI

Epigenetic regulation of the histone-to-protamine transition during spermiogenesis.

TL;DR: Recent advances in the understanding of how epigenetic players, such as histone variants and histone writers/readers/erasers, rewire the haploid spermatid genome to facilitate histone substitution by protamines in mammals are discussed.
Journal ArticleDOI

Identification of Proteins Involved in Human Sperm Motility Using High-Throughput Differential Proteomics

TL;DR: The outcomes of this study support the hypothesis that several metabolic pathways (notably, mitochondrial-related ones) contribute toward regulating sperm motility.
Journal ArticleDOI

The contribution of human sperm proteins to the development and epigenome of the preimplantation embryo.

TL;DR: The integrative analysis of the sperm, oocyte and blastocyst proteomes and transcriptomes revealed a set of embryo proteins with an exclusive paternal origin, some of which are crucial for correct embryogenesis and, possibly, for modulation of the offspring phenotype.
Journal ArticleDOI

Comprehensive analysis of histone post-translational modifications in mouse and human male germ cells

TL;DR: The first comprehensive and unbiased analysis of histone PTMs at multiple time points during mouse spermatogenesis and in mature mouse and human sperm is reported, suggesting a largely uniform histone PTM signature in sperm from individual humans.
Journal ArticleDOI

Identification of protein changes in human spermatozoa throughout the cryopreservation process.

TL;DR: Differences indicate that substantial changes occur in the sperm proteome at every stage of the cryopreservation process which may ultimately impair the sperm fertilizing capability.
References
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Journal ArticleDOI

Systematic and integrative analysis of large gene lists using DAVID bioinformatics resources.

TL;DR: By following this protocol, investigators are able to gain an in-depth understanding of the biological themes in lists of genes that are enriched in genome-scale studies.
Journal ArticleDOI

Bioinformatics enrichment tools: paths toward the comprehensive functional analysis of large gene lists

TL;DR: The survey will help tool designers/developers and experienced end users understand the underlying algorithms and pertinent details of particular tool categories/tools, enabling them to make the best choices for their particular research interests.
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Translating the Histone Code

TL;DR: It is proposed that this epigenetic marking system represents a fundamental regulatory mechanism that has an impact on most, if not all, chromatin-templated processes, with far-reaching consequences for cell fate decisions and both normal and pathological development.
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Selective recognition of methylated lysine 9 on histone H3 by the HP1 chromo domain.

TL;DR: A stepwise model for the formation of a transcriptionally silent heterochromatin is provided: SUV39H1 places a ‘methyl marker’ on histone H3, which is then recognized by HP1 through its chromo domain, which may also explain the stable inheritance of theheterochromatic state.
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Epigenetic Reprogramming in Mammalian Development

TL;DR: What is known about reprogramming in mammals and how it might relate to developmental potency and imprinting are discussed, including whether or not methylation is involved in the control of gene expression during normal development.
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