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Yonezawa, N.

Publications and source records attributed to Yonezawa, N..

2 recordsLinked to original sources

Reconstruction of artificial nuclei with nuclear import activity in living mouse oocytes

The cell nucleus is a dynamic structure repeating disassembly and reformation during mitosis. Reformation of the nucleus is essential for cell proliferation, and therefore, the factors required for nuclear reformation are fundamental for eukaryotes. Although various factors have been identified in in vitro systems using frog egg extracts and in vivo imaging of somatic cells, little is known about the factors required for the formation of functional nuclear structures in living mouse eggs. To identify such factors, we used a reconstruction approach to construct an artificial nucleus around DNA in mouse eggs. T4 phage DNA (166 kbp) was microinjected into living mouse oocytes. Amounts of DNA injected and injection timing were examined to determine the conditions appropriate for the formation of functional nuclei. Microinjection of 100-500 ng/{micro}l DNA during metaphase through telophase of the second meiosis, but not the subsequent interphase, was important for the formation of artificial nucleus. This T4 DNA-derived artificial nucleus had the structure of nuclear lamina and nuclear pore complexes, and nuclear transport activity, similar to natural nuclei. These results suggest that exogenous DNA can form a functional nucleus in mouse oocytes, regardless of the sequence or the source of DNA.

cell biology↗

ISWI chromatin remodeling complexes recruit NSD2 and H3K36me2 in pericentromeric heterochromatin

Histone H3 lysine36 dimethylation (H3K36me2) is generally distributed in the gene body and euchromatic intergenic regions. However, we found that H3K36me2 is enriched in pericentromeric heterochromatin in some mouse cell lines. We here revealed the mechanism of heterochromatin targeting of H3K36me2. Among several H3K36 methyltransferases, NSD2 was responsible for inducing heterochromatic H3K36me2. Depletion and overexpression analyses of NSD2-associating proteins revealed that NSD2 recruitment to heterochromatin was mediated through the imitation switch (ISWI) chromatin remodeling complexes, such as BAZ1B-SMARCA5 (WICH), which directly binds to AT-rich DNA via a BAZ1B domain containing AT-hook-like motifs. The abundance and stoichiometry of NSD2, SMARCA5, and BAZ1B or BAZ2A could determine the localization of H3K36me2 in different cell types. To explore the physiological role of heterochromatic H3K36me2, we analyzed mouse tissues and embryos. As a result, H3K36me2 was found in heterochromatin at the 2- to 4-cell stages of mouse preimplantation embryos, suggesting its involvement in developmental regulation. SummaryThe authors discovered histone H3K36me2, which is believed to be enriched in potentially active genomic regions, is also located in transcriptionally inactive regions called heterochromatin in some cell types. The detailed molecular mechanism of its heterochromatin targeting is now revealed.

cell biology↗