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Identification, Characterization, and Preliminary X-ray Diffraction Analysis of a Single Stranded DNA Binding Protein (LjSSB) from Psychrophilic Lacinutrix jangbogonensis PAMC 27137

Cited 1 time in wos
Cited 1 time in scopus
Title
Identification, Characterization, and Preliminary X-ray Diffraction Analysis of a Single Stranded DNA Binding Protein (LjSSB) from Psychrophilic Lacinutrix jangbogonensis PAMC 27137
Other Titles
Psychrophilic Lacinutrix jangbogonensis PAMC 27137 유래 단일가닥 DNA 결합 단백질의 서열, 생화학 특성 및 결정화 연구
Authors
Choi, Woong
손종현
박애경
김홍실
Shin, Seung Chul
Lee, Jun Hyuck
김두헌
Kim, Han-Woo
Keywords
Lacinutrix jangbogonensis PAMC 27137Single stranded DNA binding proteinX-ray crystallography
Issue Date
2022
Citation
Choi, Woong, et al. 2022. "Identification, Characterization, and Preliminary X-ray Diffraction Analysis of a Single Stranded DNA Binding Protein (LjSSB) from Psychrophilic Lacinutrix jangbogonensis PAMC 27137". CRYSTALS, 12(4): 1-9.
Abstract
Single-stranded DNA-binding proteins (SSBs) are essential for DNA metabolism, including repair and replication, in all organisms. SSBs have potential applications in molecular biology and in analytical methods. In this study, for the first time, we purified, structurally characterized, and analyzed psychrophilic SSB (LjSSB) from Lacinutrix jangbogonensis PAMC 27137 isolated from the Antarctic region. LjSSB has a relatively short amino acid sequence, consisting of 111 residues, with a molecular mass of 12.6 kDa. LjSSB protein was overexpressed in Escherichia coli BL21 (DE3) and analyzed for binding affinity using 20- and 35-mer deoxythymidine oligonucleotides (dT). In addition, the crystal structure of LjSSB at a resolution 2.6 A was obtained. The LjSSB protein crystal belongs to the space group C222 with the unit cell parameters of a = 106.58 A, b = 234.14 A, c = 66.14 A. The crystal structure was solved using molecular replacement, and subsequent iterative structure refinements and model building are currently under progress. Further, the complete structural information of LjSSB will provide a novel strategy for protein engineering and for the application on molecular biological techniques.
URI
https://repository.kopri.re.kr/handle/201206/13908
DOI
http://dx.doi.org/10.3390/cryst12040538
Type
Article
Station
해당사항없음
Indexed
SCIE
Appears in Collections  
2022-2022, Development of microbial enzymes degrading recalcitrant materials from the Arctic Circle (22-22) / Kim, Han-Woo (PN22014)
2022-2022, Post-Polar Genomics Project: Functional genomic study for securing of polar useful genes (22-22) / Kim, Jin-Hyoung (PE22160)
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