Chromatin acetylation in human oocytes

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Chromatin acetylation in human oocytes Acetylacja chromatyny w ludzkich oocytach

Objectives: The frequency of aneuploidies in human oocytes is extremely high. It is hypothesized that the cause may be due to abnormal chromatin (histone) acetylation/deacetylation. The aim of our study was to analyzed the acetylation/deacetylation pattern in spare human oocytes. Materials and Methods: Human spare oocytes (311), in other words oocytes that were not mature when collected from fo...

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In human fertilization, the sperm centrosome nucleates a radial array of microtubules called the sperm aster. The sperm aster is responsible for apposition of male and female pronuclei, and later gives rise to the first meiotic spindle. The objective of this study was to determine microtubule assembly and chromatin configuration in rabbit oocytes following intracytoplasmic injection with human ...

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Human histone chaperone nucleophosmin enhances acetylation-dependent chromatin transcription.

Histone chaperones are a group of proteins that aid in the dynamic chromatin organization during different cellular processes. Here, we report that the human histone chaperone nucleophosmin interacts with the core histones H3, H2B, and H4 but that this histone interaction is not sufficient to confer the chaperone activity. Significantly, nucleophosmin enhances the acetylation-dependent chromati...

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Histone acetylation increases chromatin accessibility.

In eukaryotes, the interaction of DNA with proteins and supramolecular complexes involved in gene expression is controlled by the dynamic organization of chromatin inasmuch as it defines the DNA accessibility. Here, the nuclear distribution of microinjected fluorescein-labeled dextrans of 42 kDa to 2.5 MDa molecular mass was used to characterize the chromatin accessibility in dependence on hist...

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histone acylation beyond acetylation: terra incognita in chromatin biology

histone acetylation, one of the first and best studied histone post-translational modifications (ptms), as well as the factors involved in its deposition (writers), binding (readers) and removal (erasers), have been shown to act at the heart of regulatory circuits controlling essential cellular functions. the identification of a variety of competing histone lysine-modifying acyl groups includin...

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ژورنال

عنوان ژورنال: Polish Gynaecology

سال: 2013

ISSN: 0017-0011

DOI: 10.17772/gp/1574