51cg

Dr Shin-Ichiro Hiraga

Dr Shin-Ichiro Hiraga
Dr Shin-Ichiro Hiraga
Dr Shin-Ichiro Hiraga

Senior Lecturer

51cg
Email Address
s.hiraga@abdn.ac.uk
Telephone Number
+44 (0)1224 437317
Office Address
2.18 Institute of Medical Sciences
Foresterhill Campus
Ashgrove Road West
AB25 2ZD

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School/Department
School of Medicine, Medical Sciences and Nutrition





Qualifications

  • BSc 
    1990 - Osaka University 
  • PhD 
    1996 - Osaka University 
  • FHEA 
    2023 - Advance HE 

External Memberships

Member of the following learned societies:

; ;

Editorial board member of:

Ad hoc reviewer for international research journals:

; ; ; ; ; ;  ; ; ; ; ;  

Latest Publications

  • Dysregulated Alternative Splicing in Breast Cancer Subtypes of RIF1 and Other Transcripts

    Parker, E., Akintche, L., Pyatnitskaya, A., Hiraga, S., Donaldson, A. D.
    International Journal of Molecular Sciences, vol. 26, no. 15, 7308
    Contributions to Journals: Articles
  • The human RIF1-Long isoform interacts with BRCA1 to promote recombinational fork repair under DNA replication stress

    Dong, Q., Day, M., Saito, Y., Parker, E., Watts, L. P., Kanemaki, M. T., Oliver, A. W., Pearl, L. H., Hiraga, S., Donaldson, A. D.
    Nature Communications, vol. 16, 5820
    Contributions to Journals: Articles
  • Checkpoint phosphorylation sites on budding yeast Rif1 protect nascent DNA from degradation by Sgs1-Dna2

    Gali, V. K., Monerawela, C., Laksir, Y., Hiraga, S., Donaldson, A. D.
    PLoS Genetics, vol. 19, no. 11, e1011044
    Contributions to Journals: Articles
  • Protection of nascent DNA at stalled replication forks is mediated by phosphorylation of RIF1 intrinsically disordered region

    Balasubramanian, S., Andreani, M., Andrade, J. G., Saha, T., Sundaravinayagam, D., Garzón, J., Zhang, W., Popp, O., Hiraga, S., Rahjouei, A., Rosen, D. B., Mertins, P., Chait, B. T., Donaldson, A. D., Di Virgilio, M.
    eLife, vol. 11, e75047
    Contributions to Journals: Articles
  • SAF-A promotes origin licensing and replication fork progression to ensure robust DNA replication

    Connolly, C., Takahashi, S., Miura, H., Hiratani, I., Gilbert, N., Donaldson, A., Hiraga, S.
    Journal of Cell Science, vol. 135, no. 2, jcs.258991
    Contributions to Journals: Articles

View My Publications

Research

Research Overview

My research goal is to investigate the mechanisms of chromosome maintenance, particularly those involved in the accurate and robust replication of chromosomal DNA.

My research involves yeast and human cell lines, and I identified Rif1-mediated Protein Phosphatase 1 (PP1) targeting to replication initiation proteins. I showed that RIF1-PP1 controls the initiation of DNA replication by modulating the phosphorylation status of MCM proteins in yeast. () and human cells ().

Our group is researching Rif1 protein's protective role in DNA replication stress on chromosomes. (; ; ). These projects aim to expand our knowledge of the mechanisms that maintain integrity in human cells and develop novel approaches to cancer prevention and treatment.

We recently found that SAF-A (also known as HNRNPU) ensures robust DNA replication in human cells by regulating 3D chromatin structure as an RNA-binding and chromatin-associated protein. ().

We are using both baker's yeast and cultured human cells as model organisms. Despite their differences in size, shape, and behavior, these cells share many fundamental mechanisms. Surprisingly, many of the genes and proteins found in our cells also exist and play similar roles in tiny yeast cells. These organisms have both advantages and drawbacks as model organisms and complement each other. I aim to combine their strengths to perform good research.

 

Research Areas

Biological and Environmental Sciences

  • Supervising

Biomedical Sciences

  • Supervising

Research Specialisms

  • Biomedical Sciences
  • Biochemistry
  • Molecular Biology
  • Cell Biology
  • Genomics

Our research specialisms are based on the Higher Education Classification of Subjects (HECoS) which is , published under the licence.

Current Research

I am currently investigating the function of yeast and human RIF1 protein in;

  • DNA replication
  • Cellular response to replication stress
  • Cell proliferation
  • Protection of chromosomes from damage during DNA replication stress

I'm also investigating the function of human SAF-A protein in;

  • Promoting replication origin licensing
  • Assisting replication fork movement
  • Promoting cell proliferation

I'm using both classical genetics and cutting-edge technologies such as ;

  • Genetic engineering
  • Flow cytometry
  • Genomics
  • Proteomics
  • Genome-wide ChIP
  • Single-cell replication timing analysis
  • Super-resolution microscopy

Collaborations

I am currently playing an important role in a collaboration involving Prof. Anne Donaldson (51cg), Dr Tony Ly and Prof. Angus Lamond (University of Dundee), Dr Simon Boulton (Crick Institute) and Prof Jon Higgins (University of New Castle).  I am also conducting international collaboration with Prof Peter Adams (Sanford Burnham Prebys), Dr Ichiro Hiratani (RIKEN Center for Biosystems Dynamics Research, Japan), Dr Masato Kanemaki (National Institute of Genetics, Japan), Professor Chikashi Obuse (Osaka University, Japan) and Professor Katsuhiko Shirahige (University of Tokyo, Japan).

Funding and Grants

Daiwa Anglo-Japanese Foundation Small Grant 2019

Cancer Research UK Programme Award (£1,561,000) ‘How does Rif1 regulate DNA replication and cell recovery after chemotherapeutic replication inhibition?' Grant to Prof Anne Donaldson & Dr Shin-ichiro Hiraga

Friends of ANCHOR Pilot Research Funding 2022 'How Cancer cells multiply and frow: the role of SAF_A variant proteins in cell proliferation in cancer'

Teaching
Publications

Page 3 of 4 Results 21 to 30 of 31

  • Quantitative proteomic analysis of chromatin reveals that Ctf18 acts in the DNA replication checkpoint

    Kubota, T., Hiraga, S., Yamada, K., Lamond, A. I., Donaldson, A. D.
    Molecular and Cellular Proteomics, vol. 10, no. 7, M110 005561
    Contributions to Journals: Articles
  • The effect of Ku on telomere replication time is mediated by telomere length but is independent of histone tail acetylation

    Lian, H., Robertson, E. D., Hiraga, S., Alvino, G. M., Collingwood, D., McCune, H. J., Sridhar, A., Brewer, B. J., Raghuraman, M. K., Donaldson, A. D.
    Molecular Biology of the Cell, vol. 22, no. 10, pp. 1753-1756
    Contributions to Journals: Articles
  • Early initiation of a replication origin tethered at the nuclear periphery

    Ebrahimi, H., Robertson, E. D., Taddei, A., Gasser, S. M., Donaldson, A. D., Hiraga, S.
    Journal of Cell Science, vol. 123, pp. 1015-1019
    Contributions to Journals: Articles
  • Histone H3 lysine 56 acetylation by Rtt109 is crucial for chromosome positioning

    Hiraga, S., Botsios, S., Donaldson, A. D.
    Journal of Cell Biology, vol. 183, no. 4, pp. 641-651
    Contributions to Journals: Articles
  • OriDB: a DNA replication origin database

    Nieduszynski, C. A., Hiraga, S., Ak, P., Benham, C. J., Donaldson, A. D.
    Nucleic Acids Research, vol. 35, no. Database Issue, pp. D40-D46
    Contributions to Journals: Articles
  • The Ctf18 RFC-like complex positions yeast telomeres but does not specify their replication time

    Hiraga, S., Robertson, E. D., Donaldson, A. D.
    EMBO Journal, vol. 25, no. 7, pp. 1505-1514
    Contributions to Journals: Articles
  • DNA polymerases alpha, delta, and epsilon localize and function together at replication forks in Saccharomyces cerevisiae

    Hiraga, S., Hagihara-Hayashi, A., Ohya, T., Sugino, A.
    Genes to Cells, vol. 10, no. 4, pp. 297-309
    Contributions to Journals: Articles
  • The DNA polymerase domain of pole is required for rapid, efficient, and highly accurate chromosomal DNA replication, telomere length maintenance, and normal cell senescence in Saccharomyces cerevisiae

    Ohya, T., Kawasaki, Y., Hiraga, S., Kanbara, S., Nakajo, K., Nakashima, N., Suzuki, A., Sugino, A.
    Journal of Biological Chemistry, vol. 277, no. 31, pp. 28099-28108
    Contributions to Journals: Articles
  • The fifth essential DNA polymerase phi in Saccharomyces cerevisiae is localized to the nucleolus and plays an important role in synthesis of rRNA

    Shimizu, K., Kawasaki, Y., Hiraga, S., Tawaramoto, M., Nakashima, N., Sugino, A.
    Proceedings of the National Academy of Sciences of the United States of America, vol. 99, no. 14, pp. 9133-9138
    Contributions to Journals: Articles
  • Interactions between Mcm10p and other replication factors are required for proper initiation and elongation of chromosomal DNA replication in Saccharomyces cerevisiae

    Kawasaki, Y., Hiraga, S., Sugino, A.
    Genes to Cells, vol. 5, no. 12, pp. 975-989
    Contributions to Journals: Articles
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