Institute for Comprehensive Medical Science

kawamura rie

  (河村 理恵)

Profile Information

Affiliation
Institute for Comprehensive Medical Science, Fujita Health University
Degree
博士(医学)(信州大学)

J-GLOBAL ID
201801002842051860
researchmap Member ID
7000023655

染色体異常の発生メカニズムを研究しています


Research Areas

 1

Research History

 2

Awards

 3

Papers

 22
  • Takeshi Sugimoto, Hidehito Inagaki, Tasuku Mariya, Rie Kawamura, Mariko Taniguchi-Ikeda, Seiji Mizuno, Yukako Muramatsu, Ikuya Tsuge, Hirofumi Ohashi, Nakamichi Saito, Yuiko Hasegawa, Nobuhiko Ochi, Masatoshi Yamaguchi, Jun Murotsuki, Hiroki Kurahashi
    Human genetics, Aug 24, 2023  
    Constitutional complex chromosomal rearrangements (CCRs) are rare cytogenetic aberrations arising in the germline via an unknown mechanism. Here we analyzed the breakpoint junctions of microscopically three-way or more complex translocations using comprehensive genomic and epigenomic analyses. All of these translocation junctions showed submicroscopic genomic complexity reminiscent of chromothripsis. The breakpoints were clustered within small genomic domains with junctions showing microhomology or microinsertions. Notably, all of the de novo cases were of paternal origin. The breakpoint distributions corresponded specifically to the ATAC-seq (assay for transposase-accessible chromatin with sequencing) read data peak of mature sperm and not to other chromatin markers or tissues. We propose that DNA breaks in CCRs may develop in an accessible region of densely packaged chromatin during post-meiotic spermiogenesis.
  • 森山 育実, 河村 理恵, 西澤 春紀, 倉橋 浩樹
    日本遺伝カウンセリング学会誌, 44(2) 95-95, Jun, 2023  
  • 河村 理恵, 倉橋 浩樹
    日本医師会雑誌, 152(特別1) S35-S39, Jun, 2023  
  • Katsuyuki Yokoi, Yoko Nakajima, Yuta Sudo, Tasuku Mariya, Rie Kawamura, Makiko Tsutsumi, Hidehito Inagaki, Tetsushi Yoshikawa, Tetsuya Ito, Hiroki Kurahashi
    JIMD reports, 63(6) 575-580, Nov, 2022  
    Maple syrup urine disease (MSUD) is a rare autosomal recessive inherited disorder of branched-chain amino acid metabolism caused by mutations in BCKDHA, BCKDHB, and DBT that encode the E1α, E1β, and E2 subunits of the branched-chain α-ketoacid dehydrogenase (BCKD) complex. Various MSUD-causing variants have been described; however, no structural rearrangements in BCKDHA have been reported to cause the classic MSUD phenotype. Here, we describe the classic patient with MSUD with compound heterozygous pathogenic variants in BCKDHA: a missense variant (NM_000709.3:c.757G > A, NP_000700.1:p.Ala253Thr) and a paracentric inversion disrupting Intron 1 of BCKDHA, which was identified by whole-genome sequencing and validated by fluorescence in situ hybridization. Using the sequence information of the breakpoint junction, we gained mechanistic insight into the development of this structural rearrangement. Furthermore, the establishment of junction-specific polymerase chain reaction could facilitate identification of the variant in case carrier or future prenatal/preimplantation tests are necessary.
  • 奥野 桜子, 藤江 里衣子, 河村 理恵, 倉橋 浩樹, 大江 瑞恵, 佐藤 労
    日本遺伝カウンセリング学会誌, 43(2) 137-137, Jun, 2022  

Misc.

 45

Research Projects

 4