발행물

전체 논문

395

11

Genome-scale analysis of syngas fermenting acetogenic bacteria reveals the translational regulation for its autotrophic growth
Song, Y., Shin, J., Jin, S., Lee, J.K., Kim, D.R., Kim, S.C., Cho, S., Cho, B.K.
BMC genomics, 2018

12

Genome-scale analysis of Acetobacterium bakii reveals the cold adaptation of psychrotolerant acetogens by post-transcriptional regulation
Shin, J., Song, Y., Jin, S., Lee, J.K., Kim, D.R., Kim, S.C., Cho, S., Cho, B.K.
RNA, 2018

13

Determination of the Genome and Primary Transcriptome of Syngas Fermenting Eubacterium limosum ATCC 8486
Song, Y., Shin, J., Jeong, Y., Jin, S., Lee, J.K., Kim, D.R., Kim, S.C., Cho, S, Cho, B.K.
Scientific Reports, 2017

14

Analysis of the core genome and pan-genome of autotrophic acetogenic bacteria.
Shin, J., Song, Y., Jeong, Y., Cho, B.K.
Front. Microbiol., 2016

15

Iron competition triggers antibiotic biosynthesis in Streptomyces coelicolor during coculture with Myxococcus xanthus
Lee, N., Kim, W., Chung, J., Lee, Y., Cho, S., Jang, K.S., Kim, S.C., Palsson, B., Cho, B.K.
ISME J., 2020

16

The Dynamic Transcriptional and Translational Landscape of the Model Antibiotic Producer Streptomyces coelicolor A3(2)
Jeong, Y*., Kim, J.N*., Kim, M.W., Bucca, G., Cho, S., Yoon, Y.J., Kim, B.K., Roe, J.H., Kim, S.C., Smith, C.P., Cho, B.K.
Nat. commun., 2016

17

Primary transcriptome analysis determines transcriptional and translational regulatory elements encoded in the Streptomyces genomes
Hwang, S., Lee, N., Jeong, Y., Lee, Y., Kim, W., Cho, S., Palsson, B., Cho, B.K.
Nucleic Acids Res., 2019

18

A Novel Approach for Gene Expression Optimization through Native Promoter and 5’ UTR Combinations Based on RNA-seq, Ribo-seq, and TSS-seq of Streptomyces coelicolor
Yi, J.S., Kim, M.W., Kim, M., Jeong, Y., Kim, E.J., Cho, B.K.*, Kim, B.G.*
ACS Synth. Biol., 2017

19

The transcription unit architecture of Streptomyces lividans TK24
Lee, Y., Lee, N., Jeong, Y., Hwang, S., Kim, W., Cho, S., Palsson, B., Cho, B.K.
Front. Microbiol., 2019

20

Reduction-to-synthesis: The dominant approach to genome-scale synthetic biology
Trends in Biotechnology, 2024