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Publications

2024

  • Dithiothreitol-based protein equalisation in the context of multiple myeloma: Enhancing proteomic analysis and therapeutic insights
    Domingos IF, Carvalho LB, Lodeiro C, Gerivaz R, Prag G, Micaglio E, ...
    Talanta, 279, 126589.

    Link

  • Proximal Co-Translation Facilitates Detection of Weak Protein-Protein Interactions
    Kordonsky A, Gabay M, Rosinoff A, Avishid R, Florentin A, Deouell N, Prag G, ...
    International Journal of Molecular Sciences, 25(20), 11099.

    Link

  • RING/U-box E3 protein BIR1 interacts with and ubiquitinates barley growth repressor BROAD LEAF1
    Soltani O, Jöst M, Hoffie I, Hensel G, Kappel C, Prag G, McKim S, ...
    Plant Physiology, 196(1), 228-243.

    Link

  • CRL4DCAF1 ubiquitin ligase regulates PLK4 protein levels to prevent premature centriole duplication
    Grossmann J, Kratz AS, Kordonsky A, Prag G, Hoffmann I.
    Life Science Alliance, 7(6).

    Link

2022

  • Split-Chloramphenicol Acetyl Transferase Assay to Study Protein-Protein Interactions and Ubiquitylation in Escherichia coli
    Florentin A, Kordonsky A, Yariv E, Avishid R, Efron N, Akogwu E, Prag G.
    Bio-protocol, 12(17), e4497.

    Link

  • Polyalanine disease mutations impair UBA6-dependent ubiquitination
    Amer-Sarsour F, Falik D, Berdichevsky Y, Kordonsky A, Prag G, ...
    The EMBO Journal, 43(2), 250-276.

    Link

2021

  • Split chloramphenicol acetyl-transferase assay reveals self-ubiquitylation-dependent regulation of UBE3B
    Levin-Kravets O, Kordonsky A, Shusterman A, Biswas S, Persaud A, Prag G, ...
    Journal of Molecular Biology, 433(23), 167276.

    Link

  • Deubiquitylating enzymes in neuronal health and disease
    Amer-Sarsour F, Kordonsky A, Berdichevsky Y, Prag G, Ashkenazi A.
    Cell Death & Disease, 12(1), 120.

    Link

2020

  • An integrative synthetic biology approach to interrogating cellular ubiquitin and ufm signaling
    Li C, Han T, Guo R, Chen P, Peng C, Prag G, Hu R.
    International Journal of Molecular Sciences, 21(12), 4231.

    Link

  • Ubiquitin signaling and degradation of aggregate-prone proteins
    Galves M, Rathi R, Prag G, Ashkenazi A.
    Trends in Biochemical Sciences, 44(10), 872-884.

    Link

2019

  • Remodeling membrane binding by mono-ubiquitylation
    Tanner N, Kleifeld O, Nachman I, Prag G.
    Biomolecules, 9(8), 325.

    Link

2018

  • E. coli-Based Selection and Expression Systems for Discovery, Characterization, and Purification of Ubiquitylated Proteins
    Levin-Kravets O, Keren-Kaplan T, Attali I, Sharon I, Tanner N, Shapira D, Prag G.
    In: The Ubiquitin Proteasome System: Methods and Protocols, 155-166.

    Link

2017

  • Ubiquitylation‐dependent oligomerization regulates activity of Nedd4 ligases Ilan Attali, William Sam Tobelaim, Avinash Persaud, Khatereh Motamedchaboki, Kobi J Simpson‐Lavy, Bayan Mashahreh, Olga Levin‐Kravets, Tal Keren‐Kaplan, Inbar Pilzer, Martin Kupiec, Reuven Wiener, Dieter A Wolf, Daniela Rotin, and Gali Prag
    Link

2016

  • Structure of ubiquitylated-Rpn10 provides insight into its autoregulation mechanism
    Keren-Kaplan T, Zeev Peters L, Levin-Kravets O, Attali I, Kleifeld O, Prag G, ...
    Nature Communications, 7(1), 12960.

    Link

2013

  • Structure-based in silico identification of ubiquitin-binding domains provides insights into the ALIX-V: ubiquitin complex and retrovirus budding
    Keren-Kaplan T, Attali I, Estrin M, Kuo LS, Farkash E, Prag G, ...
    The EMBO Journal, 32(4), 538-551.

    Link

2012

  • Synthetic biology approach to reconstituting the ubiquitylation cascade in bacteria
    Keren-Kaplan T, Attali I, Motamedchaboki K, Davis BA, Tanner N, Prag G, ...
    The EMBO Journal, 31(2), 378-390.

    Link

  • Purification and crystallization of mono-ubiquitylated ubiquitin receptor Rpn10
    Keren-Kaplan T, Prag G.
    Acta Crystallographica Section F: Structural Biology and Crystallization Communications, F68(2), 131-135.

    Link

  • Purification and crystallization of yeast Ent1 ENTH domain
    Tanner N, Prag G.
    Acta Crystallographica Section F: Structural Biology and Crystallization Communications, F68(4), 462-466.

    Link

2011

  • The hetero-hexameric nature of a chloroplast AAA+ FtsH protease contributes to its thermodynamic stability
    Moldavski O, Levin-Kravets O, Ziv T, Adam Z, Prag G.
    PLoS One, 6(4), e19541.

    Link

2008

  • A phage display system designed to detect and study protein-protein interactions
    Bair CL, Oppenheim A, Trostel A, Prag G, Adhya S.
    Molecular Microbiology, 67(4), 719-728.

    Link

2007

  • The Vps27/Hse1 complex is a GAT domain-based scaffold for ubiquitin-dependent sorting
    Prag G, Watson H, Kim YC, Beach BM, Ghirlando R, Hummer G, Hurley JH.
    Developmental Cell, 12(6), 973-986.

    Link

2006

  • Ubiquitin-binding domains
    Hurley JH, Lee S, Prag G.
    Biochemical Journal, 399(3), 361-372.

    Link

2004

  • Structure of the ESCRT-II endosomal trafficking complex
    Hierro A, Sun J, Rusnak AS, Kim J, Prag G, Emr SD, Hurley JH.
    Nature, 431(7005), 221-225.

    Link

2003

  • Mechanism of ubiquitin recognition by the CUE domain of Vps9p
    Prag G, Misra S, Jones EA, Ghirlando R, Davies BA, Horazdovsky BF, Hurley JH.
    Cell, 113(5), 609-620.

    Link

2001

  • High Resolution Structural Analyses of Mutant Chitinase A Complexes with Substrates Provide New Insight into the Mechanism of Catalysis
    Papanikolau Y, Prag G, Tavlas G, Vorgias CE, Oppenheim AB, Petratos K.
    Biochemistry, 40(38), 11338-11343.

    Link

2000

  • Structures of chitobiase mutants complexed with the substrate di-N-acetyl-D-glucosamine: the catalytic role of the conserved acidic pair, aspartate 539 and glutamate 540
    Prag G, Papanikolau Y, Tavlas G, Vorgias CE, Petratos K, Oppenheim AB.
    Journal of Molecular Biology, 300(3), 611-617.

    Link

1998

  • Participation of IHF and a distant UP element in the stimulation of the phage λ PL promoter

    Giladi H, Koby S, Prag G, Engelhorn M, Geiselmann J, Oppenheim AB.
    Molecular Microbiology, 30(2), 443-451.

    Link

1997

  • Structural principles of prokaryotic gene regulatory proteins and the evolution of repressors and gene activators

    Prag G, Greenberg S, Oppenheim AB.
    Molecular Microbiology, 26(3), 619-620.

    Link

Contact Us

The Prag Lab - Tel-Aviv University

Department of Biochemistry and Molecular Biology

Sherman 612

Tel Aviv University

69978

Tel aviv, ISRAEL

prag@tauex.tau.ac.il

Telephone   Office        +972 3   640-9828 

Telephone   X-ray lab   +972 3   640-6435

Telephone   Wet lab.    +972 3   640-9828

Cell phone                    +972 54 256-0198

Fax                               +972 3   640-6834

Based on Prag Lab's work, Coletac Therapeutics was founded.  This company exemplifies how innovative research within a university setting can successfully transition into a thriving commercial enterprise.  The foundation of Coletac Therapeutics lies in the pioneering work conducted at the Prag Lab at Tel-Aviv University, led by Professor Gali Prag.

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