Publications by authors named "K Ohsumi"

Article Synopsis
  • In eukaryotic cells, chromatin is connected to the nuclear envelope (NE) by inner nuclear membrane proteins (INMPs), but in Xenopus blastula, this connection relies on a form of actin that develops specifically for the blastula stage.
  • Experimental introduction of INMPs in egg extracts showed that only lamin B receptor (LBR) can tether chromatin to the NE when actin polymerization is limited, and this function depends on specific binding domains of LBR.
  • Interestingly, LBR levels are low during the Xenopus blastula phase, and increasing LBR prematurely disrupts nuclear structure, leads to DNA damage, and harms cell division, indicating that LBR-mediated tethering might be intentionally avoided during early
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Current therapies against invasive pulmonary aspergillosis (IPA) have a limited cure rate. Given that a delay in treatment initiation may be fatal, a new drug with rapid-onset and potent fungicidal activity is needed. The novel cyclic hexapeptide ASP2397 (currently known as VL-2397) exhibited antifungal activity against (including azole-sensitive and azole-resistant isolates), , and at an MIC range of 1 to 4 μg/ml in human serum.

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The nucleosome is the fundamental structural unit of eukaryotic chromatin. During mitosis, duplicated nucleosome fibers are organized into a pair of rod-shaped structures (chromatids) within a mitotic chromosome. However, it remains unclear whether nucleosome assembly is indeed an essential prerequisite for mitotic chromosome assembly.

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Histone chaperones are a group of histone-binding proteins that facilitate the assembly of nucleosomes, the fundamental structural units of chromatin in eukaryotes. In nucleosome assembly, deposition of a histone H3-H4 tetramer onto DNA is the first and critical step, which is mediated by the histone chaperones HIRA and CAF-1. HIRA and CAF-1 are reportedly involved in DNA replication independent (RI) and replication coupled nucleosome assembly, respectively.

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The Xenopus oocyte is known to accumulate filamentous or F-actin in the nucleus, but it is currently unknown whether F-actin also accumulates in embryo nuclei. Using fluorescence-labeled actin reporters, we examined the actin distribution in Xenopus embryonic cells and found that F-actin accumulates in nuclei during the blastula stage but not during the gastrula stage. To further investigate nuclear F-actin, we devised a Xenopus egg extract that reproduces the formation of nuclei in which F-actin accumulates.

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