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Entry ID Original Release date Data summary Entry Title Citation Title Authors
36116 2018-09-24 Chemical Shifts: 1 set
The structure of a chair-type G-quadruplex of the human telomeric variant in K+ solution A chair-type G-quadruplex structure formed by a human telomeric variant DNA in K Download bibtex for citation iamge Ben Zhong Z Tang, Bo Zhou, Changdong Liu, Dick Yan Tam, Guang Zhu, Haitao Miao, Naining Xu, Pik Kwan Lo, Rui Feng, Vitaly Kuryavyi, Xiao Shi, Yanyan Geng, Yingying You, Yuning Hong
26846 2018-06-26 Chemical Shifts: 1 set
Backbone assignments of the full length Dengue Virus NS4B protein in micelles Secondary Structure and Membrane Topology of the Full-Length Dengue Virus NS4B in Micelles. Download bibtex for citation iamge CongBao Kang, Julien Lescar, Michelle Yueqi Lee, Pei-Yong Shi, Qingxin Li, Qing-Yin Wang, Yan Li, Ying Lei Wong
26637 2016-07-15 Chemical Shifts: 1 set
Backbone assignments of dengue virus NS4B N-terminal region Secondary structure and membrane topology of dengue virus NS4B N-terminal 125 amino acids Download bibtex for citation iamge CongBao Kang, Jing Zou, Julien Lescar, Le Tian Lee, Pei-Yong Shi, Qing-Yin Wang, Qiwei Huang, Shovanlal Gayen, Xuping Xie, Yan Li, Ying Lei Wong, Young Mee Kim
19080 2013-06-04 Chemical Shifts: 2 sets
Backbone assignment of an unlinked NS2B and NS3 protease complex of dengue virus 2 NMR Analysis of a Novel Enzymatically Active Unlinked Dengue NS2B-NS3 Protease Complex. Download bibtex for citation iamge Alvin W Hung, Andy Yip, Angela Shuyi Chen, Cheng San Brian Chia, Christian G Noble, Congbao Kang, Huichang Annie Lim, Jeffrey Hill, John Liang Kuan Wee, Joma Joy, Le Tian Lee, Melgious Jin Yan Ang, Pei-Yong Shi, Qing-Yin Wang, Qiwei Huang, Rong Li, Shovanlal Gayen, Thomas H Keller, Young Mee Kim
11498 2019-09-05 Chemical Shifts: 1 set
Backbone resonance assignment for the unique and SH3 domains of mouse lymphocyte specific kinase Ionic CD3-Lck interaction regulates the initiation of T-cell receptor signaling Download bibtex for citation iamge Changting Li, Chengsong Yan, Chenqi Xu, Haopeng Wang, Hua Li, Lunyi Li, Wei Wu, Xiaoshan Shi, Xingdong Guo
17902 2016-06-29 Chemical Shifts: 1 set
Solution structure of CCL2 in complex Plasticity of the beta-Trefoil Protein Fold in the Recognition and Control of Invertebrate Predators and Parasites by a Fungal Defence System Download bibtex for citation iamge Alex Butschi, Frederic HT Allain, Iain BH Wilson, Katrin Stutz, Mario Schubert, Markus Aebi, Markus Kunzler, Martin A Walti, Michael O Hengartner, Pascal Egloff, Shi Yan, Silvia Bleuler-Martinez
17890 2012-06-04 Chemical Shifts: 1 set
NMR structure of the lectin CCL2 (free) Plasticity of the beta-Trefoil Protein Fold in the Recognition and Control of Invertebrate Predators and Parasites by a Fungal Defence System Download bibtex for citation iamge Alex Butschi, Frederic H-T Allain, Iain BH Wilson, Katrin Stutz, Mario Schubert, Markus Aebi, Markus Kunzler, Martin A Walti, Michael O Hengartner, Pascal Egloff, Shi Yan, Silvia Bleuler-Martinez
17398 2011-12-20 Chemical Shifts: 1 set
A protein from yeast Solution structure of the Pdp1 PWWP domain reveals its unique binding sites for methylated H4K20 and DNA. Download bibtex for citation iamge Chen Zhao, Guohong Li, Jiahai Zhang, Jihui Wu, Weiwei Wang, Wen Zhang, Xiaoming Tu, Yan Wang, Yunyu Shi, Yu Qiu, Zhiyong Zhang
7206 2006-08-14 Chemical Shifts: 1 set
Backbone 1H, 13C, and 15N Chemical Shift Assignments for Human RNase 7 The flexible and clustered lysine residues of human ribonuclease 7 are critical for membrane permeability and antimicrobial activity Download bibtex for citation iamge Chinpan Chen, Dah-Tsyr Chang, Hui-Ming Yu, Shih-Hsiung Wu, Shi-Jung Wu, Tin-Wei Chang, Yan-Shin Lee, You-Di Liao, Yu-Chie Huang, Yu-Min Lin
7022 2006-08-07 Chemical Shifts: 1 set
Letter to the Editor: 1H, 13C and 15N backbone resonance assignments of DUF589 domain from human HSPC144 protein 1H, 13C and 15N backbone resonance assignments of the DUF589 domain from human HSPC144 protein. Download bibtex for citation iamge Ai-xin Song, Dong-hai Lin, Hong-yu Hu, Yan-hong Shi, Yong-gang Chang
6609 2005-09-22 Chemical Shifts: 1 set
Solution structure of the ubiquitin-like domain of human DC-UBP from dendritic cells Solution structure of the ubiquitin-like domain of human DC-UbP from dendritic cells. Download bibtex for citation iamge Ai-Xin Song, Dong-Hai Lin, Hong-Yu Hu, Shu-Xun Liu, Xue-Tao Cao, Yan-Hong Shi, Yi-Zi Yu, Yong-Ghang Chang, Yong-Guang Gao
4299 1999-08-12 Chemical Shifts: 1 set
1H, 13C and 15N Resonance Assignments of Escherichia coli 6-hydroxymethyl-7,8-dihydropterin Pyrophosphokinase and its Complex with MgAMPPCP 1H, 13C and 15N Resonance Assignments of Escherichia coli 6-hydroxymethyl-7,8-dihydropterin Pyrophosphokinase and its Complex with MgAMPPCP Download bibtex for citation iamge Genbin Shi, Honggao Yan, Jinhai Gao
4300 1999-08-12 Chemical Shifts: 1 set
1H , 13C, 15N Assigned Chemical Shifts for HPPK-AMPPCP Complex 1H, 13C and 15N Resonance Assignments of Escherichia coli 6-hydroxymethyl-7,8-dihydropterin Pyrophosphokinase and its Complex with MgAMPPCP Download bibtex for citation iamge Genbin Shi, Honggao Yan, Jinhai Gao
918 1999-06-14 Chemical Shifts: 1 set
Mechanism of Adenylate Kinase. Structural and Functional Demonstration of Arginine-138 as a Key Catalytic Residue That Cannot Be Replaced by Lysine Mechanism of Adenylate Kinase. Structural and Functional Demonstration of Arginine-138 as a Key Catalytic Residue That Cannot Be Replaced by Lysine Download bibtex for citation iamge Honggao Yan, Ming-Daw Tsai, Zhengtao Shi
919 1999-06-14 Chemical Shifts: 1 set
Mechanism of Adenylate Kinase. Structural and Functional Demonstration of Arginine-138 as a Key Catalytic Residue That Cannot Be Replaced by Lysine Mechanism of Adenylate Kinase. Structural and Functional Demonstration of Arginine-138 as a Key Catalytic Residue That Cannot Be Replaced by Lysine Download bibtex for citation iamge Honggao Yan, Ming-Daw Tsai, Zhengtao Shi
920 1999-06-14 Chemical Shifts: 1 set
Mechanism of Adenylate Kinase. Structural and Functional Demonstration of Arginine-138 as a Key Catalytic Residue That Cannot Be Replaced by Lysine Mechanism of Adenylate Kinase. Structural and Functional Demonstration of Arginine-138 as a Key Catalytic Residue That Cannot Be Replaced by Lysine Download bibtex for citation iamge Honggao Yan, Ming-Daw Tsai, Zhengtao Shi