Hyun Min Kim——Associate Professor |
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Nationality:
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Republic of Korea
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Phone:
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Email:
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HKim@tju.edu.cn
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Office:
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Lab 413 Building 24
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School:
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School of Pharmaceutical Science and Technology
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ResearcherID:
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Group weblink
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2009-2016 | Postdoctoral Genetics | Harvard Medical School, U.S.A |
2003-2009 | Ph. D. Molecular Genetics | Georgia Institude of Technology, U.S.A |
2009-2016 | Research fellow | Harvard Medical School, U.S.A |
2004-2009 | Research and Teaching assistant | Georgia Institute of Technology, U.S.A |
National Natural Science Foundation of China, General Grant (No 31972876), Year 2020-2023. Research title: Mechanism of the new histone demethylase LSD1/2 homologs function in DNA damage repair. |
Scholarship from Keystone Symposia on Molecular and Cellular Biology, March 1 2009. |
Graduate research mentor award for Undergraduate Research Scholar, Georgia Tech/Emory Center for the Engineering of Living Tissue, 2009. |
Sarstedt® Graduate Student Award for ‘Outstanding Accomplishments in Ph.D. research’, Dec 11 2008, Sandi Battista, Sarstedt, Inc. |
Travel award from research mentor for Research Experience for Undergraduates 2007-2008. |
Outstanding research paper of year 2001, Dec 2001, CR association, Korea. |
Xiaojuan Zhang, Sisi Tian, Sara E. Beese-Sims, Jingjie Chen, Nara Shin, Monica P. Colaiácovo and Hyun-Min Kim*. Histone demethylase AMX-1 is necessary for proper sensitivity to interstrand crosslink DNA damage. PLOS Genetics. 2021 Jul 30;17(7):e1009715. doi: 10.1371/journal.pgen.1009715. |
Kim HM*, Zhang X. (2021) Design of Repair Templates for CRISPR-Cas9-Triggered Homologous Recombination in Caenorhabditis elegans. In: Islam M.T., Molla K.A. (eds) CRISPR-Cas Methods. Springer Nature. Humana, New York, NY. https://doi.org/10.1007/978-1-0716-1657-4_24 |
Hyun-Min Kim*, Tian Sisi and Shouyue Wang. An affordable plasmid miniprep suitable for proficient microinjection in Caenorhabditis elegans. 3 BIOTECH 10, 350 (2020). https://doi.org/10.1007/s13205-020-02346-7. |
Kim, H.-M., & Colaiácovo, M. P. (2019). CRISPR-Cas9-guided genome engineering in caenorhabditis elegans. Current Protocols in Molecular Biology, Sept 24 129, e106. doi: 10.1002/cpmb.106 |
Hyun-Min Kim, Sara Beese-Sims and Monica Colaiácovo: Fanconi Anemia FANCM/FNCM-1 and FANCD2/FCD-2 are required for maintaining histone methylation levels and interact with the histone demethylase LSD1/SPR-5 in C. elegans. GENETICS/2018/300823R1. # Highlighted paper by Genetics Society of America.2018 June. |
Nottke AC, Kim HM, Colaiácovo MP. Wrestling with Chromosomes: The Roles of SUMO During Meiosis. Adv Exp Med Biol. 2017;963:185-196. doi: 10.1007/978-3-319-50044-7_11. |
Kim HM and Colaiácovo MP. CRISPR-Cas9-guided Genome Engineering in C. elegans. Current Protocols in Molecular Biology, 2016 July. http://onlinelibrary.wiley.com/doi/10.1002/cpmb.7/full |
Norris AD*, Kim HM*, Colaiácovo MP and Calarco JA. Efficient Genome Editing in Caenorhabditis elegans with a Toolkit of Dual Marker Selection Cassettes. 2015 Aug. GENETICS. (*Co-first author) |
Kim HM# and Colaiácovo MP#. DNA damage sensitivity assays in Caenorhabditis elegans. Bio-protocol (ISSN: 2331-8325), 2015 Mar. (#Co-correspondence) |
Kim HM and Colaiácovo MP. New Insights into the Post-Translational Regulation of DNA Damage Response and Double-Strand Break Repair in Caenorhabditis elegans. GENETICS. 2015 Jun;200(2):495-504. |
Kim HM and Colaiácovo MP.ZTF-8 interacts with the9-1-1 complex and is required for DNA damage response and double-strand break repair in the C. elegans germline. PLOS Genetics,2014Oct 10(10):e1004723. |
Lu T, Aron L, Zullo J, Pan Y, Kim H, Chen Y, Yang TH, Kim HM, Drake D, Liu XS, Bennett DA, Colaiácovo MP, Yankner BA. ‘REST and stress resistance in ageing and Alzheimer's disease’, NATURE, 2014 Mar 27;507(7493):448-54. |
Kim HM, Narayanan V, Mieczkowski PA, Petes TD, Krasilnikova MM, Mirkin SM and Lobachev KS, 'Chromosome fragility at GAA tracts in yeast depends on repeat orientation and requires mismatch repair', EMBO JOURNAL, Nov 2008, vol.27,pp.2896-906 |
Narayanan V, Mieczkowski PA, Kim HM, Petes TD and Lobachev KS, 'The pattern of gene amplification is determined by the chromosomal location of hairpin-capped breaks', CELL, Jun 2006, vol.125, pp.1283-96 |