Crystal structures of the Rhodococcus proteasome with and without its pro-peptides: implications for the role of the pro-peptide in proteasome assembly

scientific article

Crystal structures of the Rhodococcus proteasome with and without its pro-peptides: implications for the role of the pro-peptide in proteasome assembly is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1016/J.JMB.2003.08.029
P3181OpenCitations bibliographic resource ID4766948
P698PubMed publication ID14659753

P50authorPaul D. AdamsQ30504798
P2093author name stringWolfgang Baumeister
Young Do Kwon
István Nagy
Bing K Jap
P2860cites workCrystallography & NMR System: A New Software Suite for Macromolecular Structure DeterminationQ26778405
P433issue1
P407language of work or nameEnglishQ1860
P921main subjectcrystal structureQ895901
P304page(s)233-45
P577publication date2004-01-02
P1433published inJournal of Molecular BiologyQ925779
P1476titleCrystal structures of the Rhodococcus proteasome with and without its pro-peptides: implications for the role of the pro-peptide in proteasome assembly
P478volume335

Reverse relations

cites work (P2860)
Q40629607Alpha-ring Independent Assembly of the 20S Proteasome
Q37606188Archaeal proteasomes and sampylation
Q38090856Assembly of the 20S proteasome.
Q26778726Bacterial Proteasomes
Q28073414Bacterial Proteasomes: Mechanistic and Functional Insights
Q38060668Bacterial β-aminopeptidases: structural insights and applications for biocatalysis
Q94540572Cooperativity in Proteasome Core Particle Maturation
Q42162926Crystallization and preliminary X-ray analysis of the Thermoplasma acidophilum 20S proteasome in complex with protein substrates
Q43129632Differential intra-proteasome interactions involving standard and immunosubunits
Q36489345Distinct Elements in the Proteasomal β5 Subunit Propeptide Required for Autocatalytic Processing and Proteasome Assembly
Q36909248Diversity of proteasomal missions: fine tuning of the immune response
Q42122935Force spectroscopy of substrate molecules en route to the proteasome's active sites
Q36023030Molecular machines for protein degradation
Q34928594Molecular mechanisms of proteasome assembly
Q28486412Mycobacterium tuberculosis prcBA genes encode a gated proteasome with broad oligopeptide specificity
Q27687728Order of the proteasomal ATPases and eukaryotic proteasome assembly
Q37765860Oxidative protein damage and the proteasome.
Q54322016Phosphorylation regulates mycobacterial proteasome.
Q37581070Precise assembly and regulation of 26S proteasome and correlation between proteasome dysfunction and neurodegenerative diseases
Q37606186Prokaryotic proteasomes: nanocompartments of degradation
Q37502693Prokaryotic ubiquitin-like protein (Pup), proteasomes and pathogenesis
Q39352782Proteasome Structure and Assembly
Q37826501Proteasome activators
Q28245575Proteasome assembly
Q35792807Proteasomes and protein conjugation across domains of life
Q24305470Protein-protein interactions among human 20S proteasome subunits and proteassemblin
Q34990851Pup, a prokaryotic ubiquitin-like protein, is an intrinsically disordered protein.
Q59082478Quantitative dynamics and binding studies of the 20S proteasome by NMR
Q34188164Rearrangement of the 16S precursor subunits is essential for the formation of the active 20S proteasome
Q27661499Structural basis for the assembly and gate closure mechanisms of the Mycobacterium tuberculosis 20S proteasome
Q38081952Structural biology of the proteasome
Q41626376Structure of the Mycobacterium tuberculosis proteasome and mechanism of inhibition by a peptidyl boronate
Q37030523The molecular sociology of the cell
Q26823027The pup-proteasome system of Mycobacterium tuberculosis
Q27935938beta-Subunit appendages promote 20S proteasome assembly by overcoming an Ump1-dependent checkpoint

Search more.