2026
14. Kim, J. M.*, Park, Y. S.*, Yi, J. S., Lee, B. M., Kim, H. J., Kim, K., Son, K. H., Shim, S. H., Yoon, Y. J. (2026) Isolation and Identification of Multiple Nematicides Produced by Streptomyces sp. AN091965. Journal of Natural Products.
2025
13. Gong, J.*, Yi, J. S.*, An, S., Cho, H. S., Shin, C. H., Won, H. J., Lee, Y., Cho, B. K., Noh, M., Yoon, Y. J. (2025) Integrated Genomic-Transcriptomic Analysis of Clavulanic Acid Production in Differentially Productive Streptomyces clavuligerus Strains. Scientific Reports, 15, 45495.
12. Yi, J. S.*, Choi, J. W.*, Thi, N. H. L.*, Kim, S. J., Kim H. J., Kim J. M., Park, J. E., Moon, K., Oh, D. C., Shim, S. H., Kang, K. S., Yoon, Y. J. (2025) Transformation‑associated recombination and heterologous expression of noncanonical depsipeptide nonribosomal peptide synthetase derived from marine Streptomyces. Marine Life Science & Technology, 7, 937-948. (JCR 1 %)
2023
11. Gong, J.*, Yi, J. S.*, Cho, H. S., Shin, C. H., Won, H. J., Cho, B. K., Noh, M., Yoon, Y. J. (2023). Transcriptome profiles of Streptomyces clavuligerus strains producing different titers of clavulanic acid. Scientific Data, 10, 804. (JCR 10.7 %, Hanbitsa selected research paper)
10. Yi, J. S.*, Kim, J. M.*, Ban, Y. H., Yoon, Y. J. (2023). Modular polyketide synthase-derived insecticidal agents: from biosynthesis and metabolic engineering to combinatorial biosynthesis for their production. Natural Product Reports, 40, 972-987. (JCR 1 %, Hanbitsa selected research paper)
2022
9. Yi, J. S.*, Kim, J. M., Kang, M. K., Kim, J. H., Cho, H. S., Ban, Y. H., Song, M. C., Son, K. H., Yoon, Y. J. (2022). Whole-genome Sequencing and Analysis of Streptomyces Strains Producing Multiple Antinematode Drugs. BMC Genomics, 23, 610.
2020
8. Yi, J. S.*, Yoo, H., Kim, E. J., & Kim, B. G. (2020). Engineering Streptomyces coelicolor for Productions of Monomethyl Branched Chain Fatty Acids. Journal of Biotechnology, 307, 69-76.
2018
7. Yi, J. S.*, Kim, M., Kim, E. J., & Kim, B. G. (2018). Production of pikromycin using branched chain amino acid catabolism in Streptomyces venezuelae ATCC 15439. Journal of Industrial Microbiology and Biotechnology, 45, 293-303.
2017
6. Yi, J. S.*, Kim, M. W., Kim, M., Jeong, Y., Kim, E. J., Cho, B. K., & Kim, B. G. (2017). A Novel Approach for Gene Expression Optimization through Native Promoter and 5’ UTR Combinations Based on RNA-seq, Bibo-seq, and TSS-seq of Streptomyces coelicolor. ACS Synthetic Biology, 6, 555-565.
2016
5. Dhakal, D.*, Chaudhary, A. K., Yi, J. S., Pokhrel, A. R., Shrestha, B., Parajuli, P., Shrestha, A., Yamaguchi, T., Jung, H. J., Kim, S. Y., Kim, B. G., & Sohng, J. K. (2016). Enhanced production of nargenicin A1 and creation of a novel derivative using a synthetic biology platform. Applied Microbiology and Biotechnology, 100, 9917-9931.
4. Kim, M.*, Yi, J. S., Lakshmanan, M., Lee, D. Y., & Kim, B. G. (2016). Transcriptomics-Based Strain Optimization Tool for Designing Secondary Metabolite Overproducing Strains of Streptomyces coelicolor. Biotechnology and Bioengineering, 113, 651-660.
2015
3. Yi, J. S.*, Kim, M., Kim, S. J., & Kim, B. G. (2015). Effects of Sucrose, Phosphate, and Calcium Carbonate on the Production of Pikromycin from Streptomyces venezuelae. Journal of Microbiology and Biotechnology, 25, 496-502.
2014
2. Kim, M.*, Yi, J. S., Kim, J., Kim, J. N., Kim, M. W., & Kim, B. G. (2014). Reconstruction of a high-quality metabolic model enables the identification of gene overexpression targets for enhanced antibiotic production in Streptomyces coelicolor A3(2). Biotechnology Journal, 9, 1185-1194.
2012
1. Kim, J. N.*, Yi, J. S., Lee, B. R., Kim, E. J., Kim, M. W., Song, Y., Cho, B. K., & Kim, B. G. (2012). A versatile PCR-based tandem epitope tagging system for Streptomyces coelicolor genome. Biochemical and Biophysical Research Communications, 424, 22-27.
