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rdf:type
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description
| - wetenschappelijk artikel (nl)
- article scientifique (publié 2005) (fr)
- 2005 թվականին հրատարակված գիտական հոդված (hy)
- наукова стаття, опублікована в січні 2005 (uk)
- im Januar 2005 veröffentlichter wissenschaftlicher Artikel (de)
- artículu científicu espublizáu en xineru de 2005 (ast)
- artikull shkencor i botuar më 01 janar 2005 (sq)
- scientific article published on 01 January 2005 (en)
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publication date
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publication date
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language of work or name
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language of work or name
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author name string
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author name string
| - Masahiro Fujimuro
- Hiroshi Hirota
- Hideyoshi Yokosawa
- Tomihisa Ohta
- Hiroyuki Onuki
- Misako Imachi
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rdfs:label
| - Himeic acid A: a new ubiquitin-activating enzyme inhibitor isolated from a marine-derived fungus, Aspergillus sp (en)
- Himeic acid A: a new ubiquitin-activating enzyme inhibitor isolated from a marine-derived fungus, Aspergillus sp (nl)
- Himeic acid A: a new ubiquitin-activating enzyme inhibitor isolated from a marine-derived fungus, Aspergillus sp (sq)
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skos:prefLabel
| - Himeic acid A: a new ubiquitin-activating enzyme inhibitor isolated from a marine-derived fungus, Aspergillus sp (en)
- Himeic acid A: a new ubiquitin-activating enzyme inhibitor isolated from a marine-derived fungus, Aspergillus sp (nl)
- Himeic acid A: a new ubiquitin-activating enzyme inhibitor isolated from a marine-derived fungus, Aspergillus sp (sq)
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name
| - Himeic acid A: a new ubiquitin-activating enzyme inhibitor isolated from a marine-derived fungus, Aspergillus sp (en)
- Himeic acid A: a new ubiquitin-activating enzyme inhibitor isolated from a marine-derived fungus, Aspergillus sp (nl)
- Himeic acid A: a new ubiquitin-activating enzyme inhibitor isolated from a marine-derived fungus, Aspergillus sp (sq)
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author
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author
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title
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title
| - Himeic acid A: a new ubiquitin-activating enzyme inhibitor isolated from a marine-derived fungus, Aspergillus sp (en)
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page(s)
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page(s)
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instance of
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instance of
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main subject
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main subject
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PubMed ID
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PubMed ID
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PubMed ID
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published in
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published in
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issue
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volume
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issue
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volume
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DOI
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DOI
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DOI
| - 10.1016/J.BMCL.2004.10.012
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is about
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is cites work
of | - Monodictyquinone A: a New Antimicrobial Anthraquinone from a Sea Urchin-Derived Fungus Monodictys sp
- Pharmacological targets in the ubiquitin system offer new ways of treating cancer, neurodegenerative disorders and infectious diseases
- Notoamides A–D: Prenylated Indole Alkaloids Isolated from a Marine-Derived Fungus,Aspergillus sp
- Marine pharmacology in 2005-6: Marine compounds with anthelmintic, antibacterial, anticoagulant, antifungal, anti-inflammatory, antimalarial, antiprotozoal, antituberculosis, and antiviral activities; affecting the cardiovascular, immune and nervous
- Targeting the ubiquitin pathway for cancer treatment
- Largazole and its derivatives selectively inhibit ubiquitin activating enzyme (e1)
- Therapeutic strategies within the ubiquitin proteasome system.
- Marine-derived Aspergillus species as a source of bioactive secondary metabolites
- Identification and mechanistic studies of a novel ubiquitin E1 inhibitor.
- Is insulin signaling molecules misguided in diabetes for ubiquitin-proteasome mediated degradation?
- A patent review of the ubiquitin ligase system: 2015-2018
- Three new antimicrobial metabolites of Phomopsis sp.
- Multilevel structure-activity profiling reveals multiple green tea compound families that each modulate ubiquitin-activating enzyme and ubiquitination by a distinct mechanism
- Secomycalolide A: A New Proteasome Inhibitor Isolated from a Marine Sponge of the Genus
- Variabines A and B: new β-carboline alkaloids from the marine sponge Luffariella variabilis.
- Discovery of Pyranoviolin A and Its Biosynthetic Gene Cluster in Aspergillus violaceofuscus
- Homology Modelling of Human E1 Ubiquitin Activating Enzyme
- Himeic Acids E^|^#8211;G, New 4-Pyridone Derivatives from a Culture of Aspergillus sp
- Identification of the Biosynthetic Gene Cluster for Himeic Acid A: A Ubiquitin-Activating Enzyme (E1) Inhibitor in Aspergillus japonicus MF275.
- Inhibition of the Ubiquitin-Activating Enzyme UBA1 Suppresses Diet-Induced Atherosclerosis in Apolipoprotein E-Knockout Mice
- Secondary Metabolites Produced by an Endophytic Fungus Pestalotiopsis sydowiana and Their 20S Proteasome Inhibitory Activities.
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is cites work
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