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nucleolin antibody | antibody review based on formal publications
NCL antibodies
This is a review about nucleolin antibodies, based on 15 published articles using nucleolin antibodies in western blot, immunohistochemistry, immunoprecipitation, immunocytochemistry, and other immunological technologies. It is aimed to help ExactAntigen visitors find the most suited nucleolin antibody.
Santa Cruz Biotechnology    search Santa Cruz Biotechnology NCL products
wbSanta Cruz Biotechnology rabbit anti-nucleolin antibody was used in western blot to study the effect of the interaction between histone deacetylase inhibitors and protein phosphatase 1 complexes on Akt in human U87MG cells. to the paper
icSanta Cruz Biotechnology mouse anti-C23 antibody was used in immunocytochemistry to study the nuclear localization of HTLV-I bZIP factor (HBZ) mediated by three distinct motifs. to the paper
icSanta Cruz Biotechnology anti-nucleolin antibody was used in immunocytochemistry to study telomere-associated protein TIN2 role in nuclear organization in human mammary epithelial cells. to the paper
wbSanta Cruz Biotechnology rabbit polyclonal anti-nucleolin antibody (sc-13057) antibody was used in western blot to study expression of Mina53 in ESCC cell. to the paper
wbSanta Cruz mouse anti-C23/nucleolin antibody was used in western blot to study impairment of SHOX nuclear localization in Léri-Weill syndrome. to the paper
wbSanta Cruz Biotechnology rabbit polyclonal anti-nucleolin (sc-13057) antibody was used in western blot to study expression of Mina53 in human colon cancer. to the paper
icSanta Cruz Biotechnology mouse monoclonal anti-nucleolin antibody was used in immunocytochemistry to study the insulin-like growth factor I receptor signaling and nuclear translocation of insulin receptor substrates 1 and 2. to the paper
ipSanta Cruz a mouse monoclonal antibody MS-3 against nucleolin was used in immunoprecipitation to study the formation of nucleolin-p53 complex. to the paper
icSanta Cruz Biotechnology monoclonal anti-nucleolin antibody (clone MS-3) was used in immunocytochemistry to detect the nucleolus marker nucleolin. to the paper
wbSanta Cruz Biotechnology nucleolin antibody was used in western blot to demonstrate the proteasome inhibitor PS-341 inhibiting growth, inducing apoptsis and overcoming drug resistance in human multiple myeloma cells. to the paper
Millipore    search Millipore NCL products
wbUpstate Biotechnology monoclonal nucleolin antibody was used in western blot to study the role of centromere RNA during the assembly of nucleoproteins at the nucleolus and centromere. to the paper
ipUpstate mouse monoclonal nucleolin antibody was used in immunoprecipitation to study rRNA transcription regulation by fibroblast growth factor 2. to the paper
icUpstate Biotechnology antinucleolin monoclonal antibody was used in immunocytochemistry to study the interaction of nonphosphorylated human La antigen with nucleolin at nucleolar sites. to the paper
RDI-NUCLEOLABM
wbRDI-NUCLEOLabm anti-nucleolin antibody was used in western blot to study the role of SETX protein in neuron death. to the paper
SERAFIN PINOL-ROMA (MOUNT SINAI SCHOOL OF MEDICINE, NEW YORK)
icSerafin Pinol-Roma (Mount Sinai School of Medicine, New York) mouse monoclonal anti-nucleolin 7G2 antibody was used in immunocytochemistry to study the binding characteristics of telomeric poly (ADP-ribose) polymerase, tankyrase 1. to the paper
Articles Reviewed
1:Lee H Wong et al. Centromere RNA is a key component for the assembly of nucleoproteins at the nucleolus and centromere. 2007
2:Ying-Zhang Chen et al. Senataxin, the yeast Sen1p orthologue: characterization of a unique protein in which recessive mutations cause ataxia and dominant mutations cause motor neuron disease. 2006
3:Chang-Shi Chen et al. Histone acetylation-independent effect of histone deacetylase inhibitors on Akt through the reshuffling of protein phosphatase 1 complexes. 2005
4:Patrick Kaminker et al. Higher-order nuclear organization in growth arrest of human mammary epithelial cells: a novel role for telomere-associated protein TIN2. 2005
5:Zhi Sheng et al. Direct regulation of rRNA transcription by fibroblast growth factor 2. 2005
6:Patrick Hivin et al. Nuclear localization of HTLV-I bZIP factor (HBZ) is mediated by three distinct motifs. 2005
7:Makoto Tsuneoka et al. Mina53 as a potential prognostic factor for esophageal squamous cell carcinoma. 2004
8:Nitin Sabherwal et al. Impairment of SHOX nuclear localization as a cause for Léri-Weill syndrome. 2004
9:Kwesi Teye et al. Increased expression of a Myc target gene Mina53 in human colon cancer. 2004
10:Robert V Intine et al. Nonphosphorylated human La antigen interacts with nucleolin at nucleolar sites involved in rRNA biogenesis. 2004
11:Hongzhi Sun et al. Insulin-like growth factor I receptor signaling and nuclear translocation of insulin receptor substrates 1 and 2. 2003
12:Yaron Daniely et al. Stress-dependent nucleolin mobilization mediated by p53-nucleolin complex formation. 2002
13:Kimberly B Kegel et al. Huntingtin is present in the nucleus, interacts with the transcriptional corepressor C-terminal binding protein, and represses transcription. 2002
14:Hiroyuki Seimiya et al. The telomeric poly(ADP-ribose) polymerase, tankyrase 1, contains multiple binding sites for telomeric repeat binding factor 1 (TRF1) and a novel acceptor, 182-kDa tankyrase-binding protein (TAB182). 2002
15:T Hideshima et al. The proteasome inhibitor PS-341 inhibits growth, induces apoptosis, and overcomes drug resistance in human multiple myeloma cells. 2001


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