Literature for family T1

Family

Summary Holotypes Alignment Tree Genomes Structure Literature H-seq M-seq Architecture

T1A

Summary Holotypes Alignment Tree Genomes Literature

T1B

Summary Holotypes Alignment Tree Genomes Literature


(Topics flags: S Structure, I Inhibitor, V Review. To select only the references relevant to a single topic, click the link above. See explanation.)

    2024
  1. Alhasan,B.A., Morozov,A.V., Guzhova,I.V. and Margulis,B.A.
    The ubiquitin-proteasome system in the regulation of tumor dormancy and recurrence
    Biochim Biophys Acta Rev Cancer1879, 189119-189119. PubMed  Europe PubMed DOI  V
  2. 2022
  3. Linhorst,A. and Lubke,T.
    The Human Ntn-Hydrolase Superfamily: Structure, Functions and Perspectives
    Cells11, PubMed  Europe PubMed DOI  V
  4. 2021
  5. Fuchs,A.C.D., Ammelburg,M., Martin,J., Schmitz,R.A., Hartmann,M.D. and Lupas,A.N.
    Archaeal Connectase is a specific and efficient protein ligase related to proteasome beta subunits
    Proc Natl Acad Sci U S A118, PubMed  Europe PubMed DOI
  6. 2019
  7. Fuchs,A.C.D. and Hartmann,M.D.
    On the origins of symmetry and modularity in the proteasome family: symmetry transitions are pivotal in the evolution and functional diversification of self-compartmentalizing proteases
    Bioessayse1800237-e1800237. PubMed  Europe PubMed DOI
  8. 2018
  9. Vielberg,M.T., Bauer,V.C. and Groll,M.
    On the trails of the proteasome fold: structural and functional analysis of the ancestral beta-subunit protein Anbu
    J Mol Biol430, 628-640. PubMed  Europe PubMed DOI
  10. 2012
  11. Adediran,S.A., Lin,G., Pelto,R.B. and Pratt,R.F.
    Crossover inhibition as an indicator of convergent evolution of enzyme mechanisms: a beta-lactamase and a N-terminal nucleophile hydrolase
    FEBS Lett586, 4186-4189. PubMed  Europe PubMed DOI  I
  12. 2008
  13. Ekici,O.D., Paetzel,M. and Dalbey,R.E.
    Unconventional serine proteases: variations on the catalytic Ser/His/Asp triad configuration
    Protein Sci17, 2023-2037. PubMed  Europe PubMed DOI  V
  14. 2007
  15. De Mot,R.
    Actinomycete-like proteasomes in a Gram-negative bacterium
    Trends Microbiol15, 335-338. PubMed  Europe PubMed DOI
  16. 2003
  17. [YEAR:7-3-2003]Gille,C., Goede,A., Schloetelburg,C., Preissner,R., Kloetzel,P.M., Gobel,U.B. and Frommel,C.
    A comprehensive view on proteasomal sequences: implications for the evolution of the proteasome
    J Mol Biol326, 1437-1448. PubMed  Europe PubMed DOI
  18. 2002
  19. [YEAR:9-1-2002]Takezaki,N., Zaleska-Rutczynska,Z. and Figueroa,F.
    Sequencing of amphioxus PSMB5/8 gene and phylogenetic position of agnathan sequences
    Gene282, 179-187. PubMed  Europe PubMed DOI
  20. 2000
  21. [YEAR:2-4-2000]Fischer,D., Gang,G., Pritts,T. and Hasselgren,P.O.
    Sepsis-induced muscle proteolysis is prevented by a proteasome inhibitor in vivo
    Biochem Biophys Res Commun270, 215-221. PubMed  Europe PubMed DOI  I
  22. [YEAR:19-5-2000]Kisselev,A.F., Songyang,Z. and Goldberg,A.L.
    Why does threonine, and not serine, function as the active site nucleophile in proteasomes?
    J Biol Chem275, 14831-14837. PubMed  Europe PubMed DOI  I
  23. Kitson,R.P., Lu,M., Siman,R. and Goldfarb,R.H.
    Proteasome inhibitor and lymphocyte function: partial inhibition of cell-mediated cytotoxicity and implication that the lymphocyte proteasome may contain multiple chymotryptic domains
    In Vivo14, 265-268. PubMed  Europe PubMed
  24. 1997
  25. Hughes,A.L.
    Evolution of the proteasome components
    Immunogenetics46, 82-92. PubMed  Europe PubMed DOI
  26. 1996
  27. Coux,O., Tanaka,K. and Goldberg,A.L.
    Structure and functions of the 20S and 26S proteasomes
    Annu Rev Biochem65, 801-847. PubMed  Europe PubMed DOI
  28. 1995
  29. [YEAR:23-11-1995]Brannigan,J.A., Dodson,G., Duggleby,H.J., Moody,P.C., Smith,J.L., Tomchick,D.R. and Murzin,A.G.
    A protein catalytic framework with an N-terminal nucleophile is capable of self-activation
    Nature378, 416-419. PubMed  Europe PubMed DOI  S
  30. Koster,A.J., Walz,J., Lupas,A. and Baumeister,W.
    Structural features of archaebacterial and eukaryotic proteasomes
    Mol Biol Rep21, 11-20. PubMed  Europe PubMed DOI
  31. Seemuller,E., Lupas,A., Stock,D., Lowe,J., Huber,R. and Baumeister,W.
    Proteasome from Thermoplasma acidophilum: a threonine protease
    Science268, 579-582. PubMed  Europe PubMed
  32. 1991
  33. DeMartino,G.N., Orth,K., McCullough,M.L., Lee,L.W., Munn,T.Z., Moomaw,C.R., Dawson,P.A. and Slaughter,C.A.
    The primary structures of four subunits of the human, high- molecular-weight proteinase, macropain (proteasome), are distinct but homologous
    Biochim Biophys Acta1079, 29-38. PubMed  Europe PubMed DOI