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  1. 1.   Analytical measuring interval, linearity, and precision of serology assays for detection of SARS-CoV-2 antibodies according to CLSI guidelines
  2. Haynesworth,Katrina; Kemp,Troy; Loftus,Sarah; Metz,Jordan; Castro, Nicholas C; Bullock, Jimmie; Fetterer, David; Pinto,Ligia
  3. mSphere. 2024, Oct 31; e0039324.
  1. 2.   Autoinhibition of ubiquitin-specific protease 8: insights into domain interactions and mechanisms of regulation
  2. Caba, Cody; Black, Megan; Liu, Yujue; DaDalt, Ashley A; Mallare, Josh; Fan,Lixin; Harding, Rachel J; Wang, Yunxin; Vacratsis, Panayiotis O; Huang, Rui; Zhuang, Zhihao; Tong, Yufeng
  3. The Journal of Biological Chemistry. 2024, Aug 28; 107727.
  1. 3.   The Degradation of Botulinum Neurotoxin Light Chains Using PROTACs
  2. Tsai,Yien Che; Kozar, Loren; Mawi, Zo P; Ichtchenko, Konstantin; Shoemaker, Charles B; McNutt, Patrick M; Weissman,Allan
  3. International Journal of Molecular Sciences. 2024, Jul 08; 25(13):
  1. 4.   RrA, an enzyme from Rhodospirillum rubrum, is a prototype of a new family of short-chain L-asparaginases
  2. Zhang,Di; Czapinska, Honorata; Bochtler, Matthias; Wlodawer,Alexander; Lubkowski,Jacek
  3. Protein Science : a publication of the Protein Society. 2024, Apr; 33(4): e4920.
  1. 5.   SARS-CoV-2 papain-like protease (PLpro) plays multiple roles in regulating cellular proteins in the endoplasmic reticulum
  2. Yang,Mei; Mariano,Jennifer; Su, Rebecca; Smith, Christopher E; Das,Sudipto; Gill, Catherine; Andresson,Thorkell; Loncarek,Jadranka; Tsai,Yien Che; Weissman,Allan
  3. The Journal of Biological Chemistry. 2023, Dec; 299(12): 105346.
  1. 6.   Promiscuous splicing-derived hairpins are dominant substrates of tailing-mediated defense of miRNA biogenesis in mammals
  2. Lee, Seungjae; Jee, David; Srivastava, Sid; Yang,Acong; Ramidi, Abhinav; Shang, Renfu; Bortolamiol-Becet, Diane; Pfeffer, Sébastien; Gu,Shuo; Wen, Jiayu; Lai, Eric C
  3. Cell Reports. 2023, Feb 16; 42(2): 112111.
  1. 7.   The small molecule inhibitor NAV-2729 has a complex target profile including multiple ADP-ribosylation factor regulatory proteins
  2. Rosenberg, Eric M; Jian, Xiaoying; Soubias,Olivier; Yoon, Hye-Young; Yadav, Mukesh P; Hammoudeh, Sarah; Pallikkuth, Sandeep; Akpan, Itoro; Chen, Pei-Wen; Maity, Tapan K; Jenkins, Lisa M; Yohe,Marielle; Byrd,Robert; Randazzo, Paul A
  3. The Journal of Biological Chemistry. 2023, Feb 07; 299(3): 102992.
  1. 8.   The regulatory mechanisms of proline and hydroxyproline metabolism: Recent advances in perspective
  2. Phang,James
  3. Frontiers in Oncology. 2023, Jan 26; 12: 1118675.
  1. 9.   Partial deletions of the autoregulatory C-terminal domain of Artemis and their effect on its nuclease activity
  2. Anne-Esguerra, Z; Wu, Mousheng; Watanabe, Go; Flint,Andrew; Lieber, Michael R
  3. DNA Repair. 2022, Oct 28; 120: 103422.
  1. 10.   Structure-guided bifunctional molecules hit a DEUBAD-lacking hRpn13 species upregulated in multiple myeloma
  2. Lu, Xiuxiu; Sabbasani, Venkata R.; Osei-Amponsa, Vasty; Evans, Christine N.; King, Julianna C.; Tarasov, Sergey G.; Dyba, Marzena; Das, Sudipto; Chan, King C.; Schwieters, Charles D.; Choudhari, Sulbha; Fromont, Caroline; Zhao, Yongmei; Tran, Bao; Chen, Xiang; Matsuo, Hiroshi; Andresson, Thorkell; Chari, Raj; Swenson, Rolf E.; Tarasova, Nadya I.; Walters, Kylie J.
  3. Nature Communications. 2021, Dec 16; 12(1):
  1. 11.   The HIV-1 Nucleocapsid Regulates Its Own Condensation by Phase-Separated Activity-Enhancing Sequestration of the Viral Protease during Maturation
  2. Lyonnais, Sébastien; Sadiq, S Kashif; Lorca-Oró, Cristina; Dufau, Laure; Nieto-Marquez, Sara; Escribà, Tuixent; Gabrielli, Natalia; Tan, Xiao; Ouizougun-Oubari, Mohamed; Okoronkwo, Josephine; Reboud-Ravaux, Michèle; Gatell, José Maria; Marquet, Roland; Paillart, Jean-Christophe; Meyerhans, Andreas; Tisné, Carine; Gorelick,Robert; Mirambeau, Gilles
  3. Viruses. 2021, Nov 19; 13(11):
  1. 12.   S-acylation of SARS-CoV-2 Spike Protein: Mechanistic Dissection, In Vitro Reconstitution and Role in Viral Infectivity
  2. Puthenveetil, Robbins; Lun, Cheng Man; Murphy, R Elliot; Healy, Liam B; Vilmen,Geraldine; Christenson, Eric T; Freed,Eric; Banerjee, Anirban
  3. The Journal of biological chemistry. 2021, Oct; 297(4): 101112.
  1. 13.   Covalent Small Molecule Immunomodulators Targeting the Protease Active Site
  2. Kim,Hong-Rae; Tagirasa,Ravichandra; Yoo,Euna
  3. Journal of medicinal chemistry. 2021, May 13; 64(9): 5291-5322.
  1. 14.   Interactions of APOBEC3s with DNA and RNA
  2. Maiti, Atanu; Hou, Shurong; Schiffer, Celia A.; Matsuo,Hiroshi
  3. Current opinion in structural biology. 2021, Apr; 67: 195-204.
  1. 15.   Structure of SARS-CoV-2 Spike Glycoprotein for Therapeutic and Preventive Target
  2. Hong, Jaewoo; Jhun, Hyunjhung; Choi, Yeo-Ok; Taitt, Afeisha S.; Bae, Suyoung; Lee, Youngmin; Song, Chang-seon; Yeom, Su Cheong; Kim, Soohyun
  3. Immune Network. 2021, Feb 19; 21(1):
  1. 16.   Cryo-EM Reveals Unanchored M1-Ubiquitin Chain Binding at hRpn11 of the 26S Proteasome
  2. Chen,Xiang; Dorris, Zachary; Shi,Dan; Huang, Rick K; Khant,Htet; Fox,Tara; De Val Alda,Natalia; Williams, Dewight; Zhang,Ping; Walters,Kylie
  3. Structure (London, England : 1993). 2020, NOV 3; 28(11): 1206-+.
  1. 17.   The indenoisoquinoline LMP517: a novel antitumor agent targeting both TOP1 and TOP2
  2. Marzi, Laetitia; Sun, Yilun; Huang, Shar-Yin N; James,Amy; Difilippantonio,Simone; Pommier, Yves
  3. Molecular cancer therapeutics. 2020, AUG; 19(8): 1589-1597.
  1. 18.   Activation mechanism of plasmepsins, pepsin-like aspartic proteases from Plasmodium, follows a unique trans-activation pathway
  2. Rathore, Ishan; Mishra, Vandana; Patel, Chandan; Xiao, Huogen; Gustchina,Alla; Wlodawer,Alexander; Yada, Rickey Y; Bhaumik, Prasenjit
  3. The FEBS journal. 2020, MAY 26;
  1. 19.   Structure of E3 ligase E6AP with a proteasome-binding site provided by substrate receptor hRpn10
  2. Buel,Gwen; Chen,Xiang; Chari,Raj; O'Neill, Maura J; Ebelle, Danielle L; Jenkins, Conor; Sridharan, Vinidhra; Tarasov,Sergey; Tarasova,Nadya; Andresson,Thorkell; Walters,Kylie
  3. Nature communications. 2020, Mar 10; 11(1): 1291.
  1. 20.   Physiologically relevant orthogonal assays for the discovery of small-molecule modulators of WIP1 phosphatase in high-throughput screens
  2. Clausse, Victor; Tao, Dingyin; Debnath, Subrata; Fang, Yuhong; Tagad, Harichandra D; Wang, Yuhong; Sun, Hongmao; LeClair, Christopher A; Mazur, Sharlyn J; Lane, Kelly; Shi, Zhen-Dan; Vasalatiy, Olga; Eells, Rebecca; Baker, Lynn K; Henderson, Mark J; Webb, Martin R; Shen, Min; Hall, Matthew D; Appella, Ettore; Appella, Daniel H; Coussens,Nathan
  3. The Journal of biological chemistry. 2019, Nov 15; 294(46): 17654-17668.
  1. 21.   Geometric considerations support the double-displacement catalytic mechanism of L-asparaginase
  2. Lubkowski,Jacek; Wlodawer,Alexander
  3. Protein science : a publication of the Protein Society. 2019, Aug 29;
  1. 22.   Crystal structure of the Schizosaccharomyces pombe U7BR E2-binding region in complex with Ubc7
  2. Hann, Zachary S; Metzger,Meredith; Weissman,Allan; Lima, Christopher D
  3. Acta crystallographica. Section F, Structural biology communications. 2019, Aug 01; 75(Pt 8): 552-560.
  1. 23.   Structural Analysis of the Active Site and DNA Binding of Human Cytidine Deaminase APOBEC3B
  2. Hou, Shurong; Silvas, Tania V.; Leidner, Florian; Nalivaika, Ellen A.; Matsuo,Hiroshi; Yilmaz, Nese Kurt; Schiffer, Celia A.
  3. JOURNAL OF CHEMICAL THEORY AND COMPUTATION. 2019, Jan 8; 15(1): 637-647.
  1. 24.   Stabilization of p27Kip1/CDKN1B by UBCH7/UBE2L3 catalyzed ubiquitinylation: a new paradigm in cell-cycle control
  2. Whitcomb, Elizabeth A; Tsai, Yien Che; Basappa, Johnvesly; Liu, Ke; Le Feuvre, Aurélie K; Weissman, Allan; Taylor, Allen
  3. FASEB Journal. 2019, Jan; 33(1): 1235-1247.
  1. 25.   Enzymatic Control of the Conformational Landscape of Supramolecular Assembling Peptides
  2. Shi, Junfeng; Fichman, Gali; Schneider, Joel
  3. Angewandte Chemie (International ed. in English). 2018, Aug 27; 57(35): 11188-11192.
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