医療科学部
Profile Information
- Affiliation
- Professor, School of Health Sciences Faculty of Medical Technology, Fujita Health University
- Degree
- 医学博士(藤田保健衛生大学)
- Researcher number
- 10247661
- J-GLOBAL ID
- 200901075566829507
- researchmap Member ID
- 1000289405
- External link
染色体異常の発生機構について研究しています。
Research Interests
22Research Areas
4Research History
9-
Sep, 2022 - Present
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Apr, 2021 - Aug, 2022
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Apr, 2016 - Mar, 2021
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Apr, 2015 - Mar, 2016
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Apr, 2007 - Mar, 2015
Committee Memberships
6-
2020 - Present
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Oct, 2015 - Present
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2013 - Present
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Apr, 2013 - Mar, 2020
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Jun, 2014 - May, 2015
Papers
106-
Journal of human genetics, 67(6) 363-368, Jan 14, 2022 Peer-reviewedStructural analysis of small supernumerary marker chromosomes (sSMCs) has revealed that many have complex structures. Structural analysis of sSMCs by whole genome sequencing using short-read sequencers is challenging however because most present with a low level of mosaicism and consist of a small region of the involved chromosome. In this present study, we applied adaptive sampling using nanopore long-read sequencing technology to enrich the target region and thereby attempted to determine the structure of two sSMCs with complex structural rearrangements previously revealed by cytogenetic microarray. In adaptive sampling, simple specification of the target region in the FASTA file enables to identify whether or not the sequencing DNA is included in the target, thus promoting efficient long-read sequencing. To evaluate the target enrichment efficiency, we performed conventional pair-end short-read sequencing in parallel. Sequencing with adaptive sampling achieved a target enrichment at about a 11.0- to 11.5-fold higher coverage rate than conventional pair-end sequencing. This enabled us to quickly identify all breakpoint junctions and determine the exact sSMC structure as a ring chromosome. In addition to the microhomology and microinsertion at the junctions, we identified inverted repeat structure in both sSMCs, suggesting the common generation mechanism involving replication impairment. Adaptive sampling is thus an easy and beneficial method of determining the structures of complex chromosomal rearrangements.
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日本遺伝カウンセリング学会誌, 2022 Peer-reviewedCorresponding author
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The Journal of Infectious Diseases, 223(10) 1717-1723, May 28, 2021 Peer-reviewed<title>Abstract</title> <sec> <title>Background</title> Human herpesvirus 6 (HHV-6) can be genetically transmitted from parent to child as inherited chromosomally integrated HHV-6 (iciHHV-6). HHV-6 reactivation occurs in pregnant women with iciHHV-6. We found no sex differences in the frequency of index cases with iciHHV-6 but inheritance from the father was more common. We evaluated the association between iciHHV-6 status and spontaneous abortion. </sec> <sec> <title>Methods</title> iciHHV-6 was confirmed by high viral DNA copy numbers in whole blood and somatic cells. The origin of integrated viral genome, paternal or maternal, was examined using the same method. The pregnancy history of 23 mothers in families with iciHHV-6 and 285 mothers in families without iciHHV-6 was abstracted. </sec> <sec> <title>Results</title> Of 23 iciHHV-6 index cases, 8 mothers and 15 fathers had iciHHV-6. Spontaneous abortion rates in mothers with and mothers without/fathers with iciHHV-6 and mothers in families without iciHHV-6 were 27.6%, 10.3%, and 14.8%, respectively (P = .012). Mothers with iciHHV-6 (odds ratio [OR], 6.41; 95% confidence interval [CI], 1.10–37.4) and maternal age at the most recent pregnancy ≥40 years (OR, 3.91; 95% CI, 1.30–11.8) were associated with 2 or more spontaneous abortions. </sec> <sec> <title>Conclusions</title> Mothers with iciHHV-6 is a risk factor for spontaneous abortion. </sec>
Misc.
142Presentations
4-
8th international Conference on HHV-6 & 7, Apr, 2013
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56th annual meeting of American Society of Human Genetics, Oct, 2006
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54th American Society of Human Genetics, Oct, 2004
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12th International Symposium chemistry and Biology of Pteridines and Folates, Bethesda, Jun, 2001
Teaching Experience
9Professional Memberships
4Research Projects
12-
Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, Apr, 2017 - Mar, 2021
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文部科学省:科学研究費補助金(基盤研究C), Apr, 2019 - Mar, 2021
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Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, Apr, 2016 - Mar, 2020
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Apr, 2016 - Mar, 2018
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Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, 2009 - 2011