| Entry ID | 
            Original Release date | 
            Data summary | 
            Entry Title | 
            Citation Title | 
            Authors | 
                    
    
    
        | 30724 | 
        2020-04-27 | 
        Chemical Shifts: 1 set   | 
        Cap1G-TPUA | 
        
Structural basis for transcriptional start site control of HIV-1 RNA fate            
                 
            
         | 
        Aishwarya S Iyer, Alice Telesnitsky, Bryce Edwards, David A Case, Dillion Francis, Frances Grace G Ghinger, Ghazal Becker, Hannah Carter, Issac Chaudry, Jana Hijji, Joshua D Brown, Kailan Stewart, Karndeep Singh, Lindsay Glang, Matthew Orellana, Michael F Summers, Michael W Lopresti, Patrick Chen, Seung H Choi, Siarhei Kharytonchyk, Tatiana Rodriguez, Ubiomo Oboh, Yash Desai |         
    
    
        | 30723 | 
        2020-04-27 | 
        Chemical Shifts: 1 set   | 
        Cap3G-TAR-F1 | 
        
Structural basis for transcriptional start site control of HIV-1 RNA fate            
                 
            
         | 
        Aishwarya S Iyer, Alice Telesnitsky, Bryce Edwards, David A Case, Dillion Francis, Frances Grace G Ghinger, Ghazal Becker, Hannah Carter, Issac Chaudry, Jana Hijji, Joshua D Brown, Kailan Stewart, Karndeep Singh, Lindsay Glang, Matthew Orellana, Michael F Summers, Michael W Lopresti, Patrick Chen, Seung H Choi, Siarhei Kharytonchyk, Tatiana Rodriguez, Ubiomo Oboh, Yash Desai |         
    
    
        | 19205 | 
        2014-05-05 | 
        Chemical Shifts: 1 set   | 
        Solution NMR Structure of Engineered Cystine Knot Protein 2.5D | 
        
Challenging the state of the art in protein structure prediction: Highlights of experimental target structures for the 10th Critical Assessment of Techniques for Protein Structure Prediction Experiment CASP10            
                 
            
         | 
        Alex Burgin, Anca Segall, Andriy Kryshtafovych, Carmela Garcia-Doval, Chen Chen, Daniel C Nelson, Deborah Fass, Donald Lorimer, Forest Rohwer, Frank V Cochran, Hartmut Luecke, J Fernando Bazan, John Moult, Kornelius Zeth, Marco Biasini, Mark J van Raaij, Osnat Herzberg, Patrick Bales, Rhiju Das, Timothy K Craig, Torsten Schwede, Victor Seguritan, Xiaolei Ma |         
    
    
        | 17840 | 
        2012-02-28 | 
        Chemical Shifts: 1 set   | 
        GB98 solution structure | 
        
Mutational tipping points for switching protein folds and functions            
                 
            
         | 
        John Orban, Patrick Alexander, Philip Bryan, Yanan He, Yihong Chen |         
    
    
        | 17839 | 
        2012-02-28 | 
        Chemical Shifts: 1 set   | 
        Ga98 solution structure | 
        
Mutational tipping points for switching protein folds and functions            
                 
            
         | 
        John Orban, Patrick Alexander, Philip Bryan, Yanan He, Yihong Chen |         
    
    
        | 17843 | 
        2012-02-28 | 
        Chemical Shifts: 1 set   | 
        GB98-T25I solution structure | 
        
Mutational tipping points for switching protein folds and functions            
                 
            
         | 
        John Orban, Patrick Alexander, Philip Bryan, Yanan He, Yihong Chen |         
    
    
        | 17841 | 
        2012-02-28 | 
        Chemical Shifts: 1 set   | 
        GB98-T25I,L20A | 
        
Mutational tipping points for switching protein folds and functions            
                 
            
         | 
        John Orban, Patrick Alexander, Philip Bryan, Yanan He, Yihong Chen |         
    
    
        | 15537 | 
        2008-11-03 | 
        Chemical Shifts: 1 set   | 
        Solution NMR structures of two designed proteins with 88% sequence identity but different fold and function | 
        
NMR structures of two designed proteins with high sequence identity but different fold and function            
                 
            
         | 
        John Orban, Patrick Alexander, Philip N Bryan, Yanan He, Yihong Chen |         
    
    
        | 15535 | 
        2008-11-03 | 
        Chemical Shifts: 1 set   | 
        Solution NMR structures of two designed proteins with 88% sequence identity but different fold and function | 
        
NMR structures of two designed proteins with high sequence identity but different fold and function            
                 
            
         | 
        John Orban, Patrick Alexander, Philip N Bryan, Yanan He, Yihong Chen |