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  1. 1.   Unique Structural Fold of LonBA Protease from Bacillus subtilis, a Member of a Newly Identified Subfamily of Lon Proteases
  2. Gustchina,Alla; Li,Mi; Andrianova, Anna G; Kudzhaev, Arsen M; Lountos,George; Sekula, Bartosz; Cherry,Scott; Tropea, Joseph E; Smirnov, Ivan V; Wlodawer,Alexander; Rotanova, Tatyana V
  3. International Journal of Molecular Sciences. 2022, Sep 28; 23(19):
  1. 2.   RNF219 attenuates global mRNA decay through inhibition of CCR4-NOT complex-mediated deadenylation
  2. Poetz, Fabian; Corbo,Joshua; Levdansky,Yevgen; Spiegelhalter, Alexander; Lindner, Doris; Magg, Vera; Lebedeva, Svetlana; Schweiggert, Jorg; Schott, Johanna; Valkov,Eugene; Stoecklin, Georg
  3. Nature Communications. 2021, Dec 9; 12(1):
  1. 3.   Cryo-EM structure of substrate-free E. coli Lon protease provides insights into the dynamics of Lon machinery
  2. Botos, Istvan; Lountos,George; Wu,Weimin; Cherry,Scott; Ghirlando, Rodolfo; Kudzhaev, Arsen M; Rotanova, Tatyana V; de Val, Natalia; Tropea,Joseph; Gustchina,Alla; Wlodawer,Alexander
  3. Current research in structural biology. 2019, Nov; 1: 13-20.
  1. 4.   New insights into structural and functional relationships between LonA proteases and ClpB chaperones
  2. Rotanova, Tatyana V; Andrianova, Anna G; Kudzhaev, Arsen M; Li,Mi; Botos, Istvan; Wlodawer,Alexander; Gustchina,Alla
  3. FEBS open bio. 2019, JUL 21;
  1. 5.   Integrating data and knowledge to identify functional modules of genes: a multilayer approach
  2. Liang, Lifan; Chen,Vicky; Zhu, Kunju; Fan, Xiaonan; Lu, Xinghua; Lu, Songjian
  3. BMC bioinformatics. 2019, May 02; 20(1): 225.
  1. 6.   Flexible Cullins in Cullin-RING E3 Ligases Allosterically Regulate Ubiquitination
  2. Liu, J.; Nussinov, R.
  3. Journal of Biological Chemistry. 2011, Nov; 286(47): 40934-40942.
  1. 7.   The novel fold of scytovirin reveals a new twist for antiviral entry inhibitors
  2. McFeeters, R. L.; Xiong, C. Y.; O'Keefe, B. R.; Bokesch, H. R.; McMahon, J. B.; Ratner, D. M.; Castelli, R.; Seeberger, P. H.; Byrd, R. A.
  3. Journal of Molecular Biology. 2007, Jun; 369(2): 451-461.
  1. 9.   CK2 is a component of the KSR1 scaffold complex that contributes to Raf kinase activation
  2. Ritt, D. A.; Zhou, M.; Conrads, T. P.; Veenstra, T. D.; Copeland, T. D.; Morrison, D. K.
  3. Current Biology. 2007, Jan; 17(2): 179-184.
  1. 10.   Conformational analysis of an alpha 3 beta 1 integrin-binding peptide from thrombospondin-1: Implications for antiangiogenic drug design
  2. Furrer, J.; Luy, B.; Basrur, V.; Roberts, D. D.; Barchi, J. J.
  3. Journal of Medicinal Chemistry. 2006, Oct; 49(21): 6324-6333.
  1. 11.   Determining a helical protein structure using peptide pixels
  2. Walsh, J. D.; Kuszweski, J.; Wang, Y. X.
  3. Journal of Magnetic Resonance. 2005, NOV; 177(1): 155-159.
  1. 12.   ATP-regulated module (ARM) of the atrial natriuretic factor receptor guanylate cyclase
  2. Duda, T.; Venkataraman, V.; Ravichandran, S.; Sharma, R. K.
  3. Peptides. 2005, JUN; 26(6): 969-984.
  1. 13.   Switches in bacteriophage lambda development
  2. Oppenheim, A. B.; Kobiler, O.; Stavans, J.; Court, D. L.; Adhya, S.
  3. Annual Review of Genetics. 2005 39: 409-429.
  1. 14.   Classification of ATP-dependent proteases Lon and comparison of the active sites of their proteolytic domains
  2. Rotanova, T. V.; Melnikov, E. E.; Khalatova, A. G.; Makhovskaya, O. V.; Botos, I.; Wlodawer, A.; Gustchina, A.
  3. European Journal of Biochemistry. 2004, DEC; 271(23-24): 4865-4871.
  1. 15.   Interactions between immunoglobulin-like and catalytic modules in Clostridium thermocellum cellulosomal cellobiohydrolase CbhA
  2. Kataeva, I. A.; Uversky, V. N.; Brewer, J. M.; Schubot, F.; Rose, J. P.; Wang, B. C.; Ljungdahl, L. G.
  3. Protein Engineering Design & Selection. 2004, NOV; 17(11): 759-769.
  1. 16.   Crystal structure of the AAA(+) alpha domain of E-coli Lon protease at 1.9 angstrom resolution
  2. Botos, I.; Melnikov, E. E.; Cherry, S.; Khalatova, A. G.; Rasulova, F. S.; Tropea, J. E.; Maurizi, M. R.; Rotanova, T. V.; Gustchina, A.; Wlodawer, A.
  3. Journal of Structural Biology. 2004, APR-MAY; 146(1-2): 113-122.
  1. 17.   Synthesis of a 5-methylindolyl-containing macrocycle that displays ultrapotent Grb2 SH2 domain-binding affinity
  2. Shi, Z. D.; Lee, K.; Wei, C. Q.; Roberts, L. R.; Worthy, K. M.; Fisher, R. J.; Burke, T. R.
  3. Journal of Medicinal Chemistry. 2004 47(4): 788-791.
  1. 18.   Predicting molecular interactions in silico: I. A guide to pharmacophore identification and its applications to drug design
  2. Dror, O.; Shulman-Peleg, A.; Nussinov, R.; Wolfson, H. J.
  3. Current Medicinal Chemistry. 2004 11(1): 71-90.
  1. 19.   Enhanced CACTVS browser of the open NCI database
  2. Ihlenfeldt, W. D.; Voigt, J. H.; Bienfait, B.; Oellien, F.; Nicklaus, M. C.
  3. Journal of Chemical Information and Computer Sciences. 2002 42(1): 46-57.
  1. 20.   Comparison of the NCI open database with seven large chemical structural databases
  2. Voigt, J. H.; Bienfait, B.; Wang, S. M.; Nicklaus, M. C.
  3. Journal of Chemical Information and Computer Sciences. 2001 41(3): 702-712.
  1. 21.   The C4b-Binding Protein Protein S Interaction Is Hydrophobic in Nature
  2. Blom, A. M.; Covell, D. G.; Wallqvist, A.; Dahlback, B.; Villoutreix, B. O.
  3. Biochimica et Biophysica Acta - Protein Structure & Molecular Enzymology. 1998 1388(1): 181-189.
  1. 22.   Dynamic Protein Allosteric Regulation and Disease
  2. Nussinov,Ruth; Tsai,Chung-Jung; Jang,Hyunbum
  3. Advances in experimental medicine and biology. 2019 1163: 25-43.
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