The University of Tokyo · Biochemistry, Genetics and Molecular Biology
Professor Yasuhiro Fujiwara's research lab focuses on molecular and cellular mechanisms underlying human diseases, particularly in the fields of vascular biology, male infertility, and epigenetics. The lab investigates genetic and molecular pathways involved in cerebrovascular disorders such as CADASIL, with a focus on vascular reactivity and smooth muscle function. It also explores the role of key proteins like syntaxin2 and sulfoglycolipids in spermatogenesis, identifying novel genes essential for meiotic progression. Additionally, the lab contributes to advanced genomics techniques, such as CUT&Tag optimization, to improve epigenomic profiling. The integration of genetic models, cellular imaging, and translational research defines the lab’s interdisciplinary approach.
Figures are computed from collected data and may differ slightly.
Vasoreactivity is reduced in peripheral arteries and in intracranial arteries in patients with CADASIL.
Syntaxin2 (STX2), also known as epimorphin, is a member of the SNARE family of proteins, with expression in various types of cells. We previously identified an ENU-induced mutation, repro34, in the mouse Stx2 gene. The Stx2(repro34) mutation causes male-restricted infertility due to syncytial multinucleation of spermatogenic cells during meiotic prophase. A similar phenotype is also observed in mice with targeted inactivation of Stx2, as well as in mice lacking enzymes involved in sulfoglycolipi
Epigenome research has employed various methods to identify the genomic location of proteins of interest, such as transcription factors and histone modifications. A recently established method called CUT&Tag uses a Protein-A Tn5 transposase fusion protein, which cuts the genome and inserts adapter sequences nearby the target protein. Throughout most of the CUT&Tag procedure, cells are held on concanavalin A (con A)-conjugated magnetic beads. Proper holding of cells would be decisive for the acce
The ENU-induced repro57 mutation was identified in an unbiased screen for the discovery of novel genes for fertility. Male repro57 homozygous mice are infertile and exhibit significantly reduced testis weight compared with WT mice. Histological examination of mutant testes revealed that spermatocytes degenerated during late prophase, and no mature spermatozoa were found in the seminiferous epithelium, suggesting that infertility is caused by the arrest of spermatogenesis at late meiotic prophase
PPI treatment is not associated with SIBO in Japanese patients. Mechanisms apart from SIBO could cause the high prevalence of postprandial fullness in PPI users.
The improved diagnostic accuracy of PET/CT can be explained by its ability to detect actively progressive metastasis at an early phase regardless of size.
Granular cell tumour of the oesophagus is rare and usually single. It is diagnosed by endoscopic appearance, results of endosonography, and histological examination of biopsy specimens. Although histological examination is required for diagnosis, it is difficult occasionally to obtain tumour samples by forceps because granular cell tumour is usually located in the submucosal layer. We report the case of a Japanese man with two granular cell tumours of the oesophagus. One lesion was diagnosed as
Meiosis is specialized cell division during gametogenesis that produces genetically unique gametes via homologous recombination. Meiotic homologous recombination entails repairing programmed 200-300 DNA double-strand breaks generated during the early prophase. To avoid interference between meiotic gene transcription and homologous recombination, mammalian meiosis is thought to employ a strategy of exclusively transcribing meiotic or post-meiotic genes before their use. Recent studies have shown
An unbiased screen for discovering novel mouse genes for fertility identified the spcar3, spermatocyte arrest 3, mutant phenotype. The spcar3 mutation identified a new allele of the Setx gene, encoding senataxin, a DNA/RNA helicase that regulates transcription termination by resolving DNA/RNA hybrid R-loop structures. The Setxspcar3 mutant mice exhibit male infertility and female subfertility. Histology of the Setxspcar3 mutant testes revealed the absence of spermatids and mature spermatozoa in
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