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  1. 1.   Extraordinary Titer and Broad Anti-SARS-CoV-2 Neutralization Induced by Stabilized RBD Nanoparticles from Strain BA.5
  2. Wang, Zhantong; Zhang, Baoshan; Ou, Li; Qiu, Qi; Wang, Lingshu; Bylund, Tatsiana; Kong, Wing-Pui; Shi, Wei; Tsybovsky,Yaroslav; Wu, Lingyuan; Zhou, Qiong; Chaudhary, Ridhi; Choe, Misook; Dickey, Thayne H; El Anbari, Mohammed; Olia, Adam S; Rawi, Reda; Teng, I-Ting; Wang, Danyi; Wang, Shuishu; Tolia, Niraj H; Zhou, Tongqing; Kwong, Peter D
  3. Vaccines. 2023, Dec 28; 12(1):
  1. 2.   Recent developments in animal venom peptide nanotherapeutics with improved selectivity for cancer cells
  2. Giribaldi,Julien; Smith,Jennifer; Schroeder,Christina
  3. Biotechnology advances. 2021, Sep-Oct; 50
  1. 3.   Tumor-Shed Antigen Affects Antibody Tumor Targeting: Comparison of Two Zr-89-Labeled Antibodies Directed against Shed or Nonshed Antigens
  2. Lee, Jae-Ho; Kim, Heejung; Yao, Zhengsheng; Szajek, Lawrence P.; Grasso, Luigi; Kim, Insook; Paik, Chang H.
  3. Contrast Media & Molecular Imaging. 2018, Mar 12; 2018: 2461257.
  1. 4.   Stable and Potent Selenomab-Drug Conjugates
  2. Li, Xiuling; Nelson, Christopher; Nair, Rajesh R; Hazlehurst, Lori; Moroni, Tina; Martinez-Acedo, Pablo; Nanna, Alex R; Hymel, David; Burke, Terrence; Rader, Christoph
  3. Cell Chemical Biology. 2017, Apr 20; 24(4): 433-442.
  1. 5.   The N-acetyl-binding pocket of N-acetylglucosaminyltransferases also accommodates a sugar analog with a chemical handle at C2
  2. Pasek, M.; Ramakrishnan, B.; Boeggeman, E.; Mercer, N.; Dulcey, A. E.; Griffiths, G. L.; Qasba, P. K.
  3. Glycobiology. 2012, Mar; 22(3): 379-388.
  1. 6.   Application of a water-soluble pyridyl disulfide amine linker for use in Cu-free click bioconjugation
  2. Thomas, J. D.; Burke, T. R.
  3. Tetrahedron Letters. 2011, Aug; 52(33): 4316-4319.
  1. 7.   Evolution of a Major Drug Metabolizing Enzyme Defect in the Domestic Cat and Other Felidae: Phylogenetic Timing and the Role of Hypercarnivory
  2. Shrestha, B. S. B.; Reed, J. M.; Starks, P. T.; Kaufman, G. E.; Goldstone, J. V.; Roelke, M. E.; O'Brien, S. J.; Koepfli, K. P.; Frank, L. G.; Court, M. H.
  3. Plos One. 2011, Mar; 6(3): 11.
  1. 8.   Rbx1 Flexible Linker Facilitates Cullin-RING Ligase Function Before Neddylation and After Deneddylation
  2. Liu, J.; Nussinov, R.
  3. Biophysical Journal. 2010, Aug; 99(3): 736-744.
  1. 9.   A Mechanistic View of the Role of E3 in Sumoylation
  2. Tozluoglu, M.; Karaca, E.; Nussinov, R.; Halilogiu, T.
  3. Plos Computational Biology. 2010, Aug; 6(8): 10.
  1. 10.   Multiple Site-Specific in Vitro Labeling of Single-Chain Antibody
  2. Ramakrishnan, B.; Boeggeman, E.; Manzoni, M.; Zhu, Z. Y.; Loomis, K.; Puri, A.; Dimitrov, D. S.; Qasba, P. K.
  3. Bioconjugate Chemistry. 2009 20(7): 1383-1389.
  1. 11.   Loss of SUMO1 in mice affects RanGAP1 localization and formation of PML nuclear bodies, but is not lethal as it can be compensated by SUMO2 or SUMO3
  2. Evdokimov, E.; Sharma, P.; Lockett, S. J.; Lualdi, M.; Kuehn, M. R.
  3. Journal of Cell Science. 2008 121(24): 4106-4113.
  1. 13.   Novel method for in vitro O-glycosylation of proteins: Application for bioconjugation
  2. Ramakrishnan, B.; Boeggeman, E.; Qasba, P. K.
  3. Bioconjugate Chemistry. 2007, Nov-Dec; 18(6): 1912-1918.
  1. 14.   Mouse Ubc9 knockout: Many path(way)s to ruin
  2. Kuehn, M. R.
  3. Developmental Cell. 2005, DEC; 9(6): 727-728.
  1. 15.   Genetics of ATP-binding cassette transporters
  2. Dean, M.
  3. Phase II Conjugation Enzymes and Transport Systems. 2005; 400 : 409-429.
  1. 16.   Preclinical manufacture of an anti-HER2 scFv-PEG-DSPE, liposome-inserting conjugate. 1. Gram-scale production and purification
  2. Nellis, D. F.; Ekstrom, D. L.; Kirpotin, D. B.; Zhu, J. W.; Andersson, R.; Broadt, T. L.; Ouellette, T. F.; Perkins, S. C.; Roach, J. M.; Drummond, D. C.; Hong, K. L.; Marks, J. D.; Park, J. W.; Giardina, S. L.
  3. Biotechnology Progress. 2005, JAN-FEB; 21(1): 205-220.
  1. 17.   Preclinical manufacture of anti-HER2 liposome-inserting, scFv-PEG-Lipid conjugate. 2. Conjugate micelle identity, purity, stability, and potency analysis
  2. Nellis, D. F.; Giardina, S. L.; Janini, G. M.; Shenoy, S. R.; Marks, J. D.; Tsai, R.; Drummond, D. C.; Hong, K.; Park, J. W.; Ouellette, T. F.; Perkins, S. C.; Kirpotin, D. B.
  3. Biotechnology Progress. 2005, JAN-FEB; 21(1): 221-232.
  1. 18.   Poly(ethylene glycol) prodrugs of the CDK inhibitor, alsterpaullone (NSC 705701): Synthesis and pharmacokinetic studies
  2. Greenwald, R. B.; Zhao, H.; Xia, J.; Wu, D. C.; Nervi, S.; Stinson, S. F.; Majerova, E.; Bramhall, C.; Zaharevitz, D. W.
  3. Bioconjugate Chemistry. 2004, SEP-OCT; 15(5): 1076-1083.
  1. 19.   Residues 207, 216, and 221 and the catalytic activity of mGSTA1-1 and mGSTA2-2 toward benzo a pyrene-(7R,8S)-diol- (9S,10R)-epoxide
  2. Gu, Y. J.; Xiao, B.; Wargo, H. L.; Bucher, M. H.; Singh, S. V.; Ji, X. H.
  3. Biochemistry. 2003 42(4): 917-921.
  1. 21.   Role of arginine 216 in catalytic activity of murine Alpha class glutathione transferases mGSTAl-1 and mGSTA2-2 toward carcinogenic diol epoxides of polycyclic aromatic hydrocarbons
  2. Pal, A.; Gu, Y. J.; Herzog, C.; Srivastava, S. K.; Zimniak, P.; Ji, X. H.; Singh, S. V.
  3. Carcinogenesis. 2001 22(8): 1301-1305.
  1. 24.   Structure and function of residue 104 and water molecules in the xenobiotic substrate-binding site in human glutathione S-transferase P1-1
  2. Ji, X. H.; Blaszczyk, J.; Xiao, B.; O'Donnell, R.; Hu, X.; Herzog, C.; Singh, S. V.; Zimniak, P.
  3. Biochemistry. 1999 38(32): 10231-10238.
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