Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Pivot Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Target Concepts:
Gene/Protein
Disease
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Drug
Enzyme
Compound
Query: EC:3.6.3.14 (
ATP synthase
)
7,042
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
The superinvasive phenotype exhibited by paclitaxel-selected variants of an in vitro invasive clonal population of the human cancer cell line, MDA-MB-435S were examined using DIGE (Fluorescence 2-D Difference Gel Electrophoresis) and mass spectrometry. Isolation of membrane proteins from the MDA-MB-435S-F/Taxol-10p4p and parental populations was performed by temperature-dependent phase partitioning using the detergent Triton X-114. Subsequent DIGE-generated data analysed using Decyder software showed many differentially-expressed proteins in the membrane fraction. 16 proteins showing statistically significant upregulation in the superinvasive cells were identified by MALDI-ToF. Proteins upregulated in the superinvasive population include
Galectin-3
, Cofilin,
ATP synthase
beta subunit, voltage-dependent anion channel 1, voltage dependent anion channel 2, ER-60 protein, MHC class II antigen DR52, Beta actin, TOMM40 protein, Enolase 1, Prohibitin, Guanine nucleotide-binding protein, Annexin II, Heat shock 70 kDa protein, Stomatin-like protein 2 and Chaperonin. Many of these proteins are associated with inhibition of apoptosis, the progression of cancer, tumourigenicity, metastasis, actin remodelling at the leading edge of cells, polarized cell growth, endocytosis, phagocytosis, cellular activation, cytokinesis, and pathogen intracellular motility. These results suggest a correlation between the increased abundance of these proteins with the superinvasive phenotype of the paclitaxel-selected MDA-MB-435S-F/Taxol-10p4p population.
...
PMID:Proteomic analysis of isolated membrane fractions from superinvasive cancer cells. 1708 86
Polycyclic aromatic hydrocarbon (PAH) DNA adducts have been associated with carcinogenesis, which is accompanied by multiple alterations in gene expression. We used two-dimensional electrophoresis to distinguish protein expression changes induced in MCF-7 cells by individual PAH (B[a]P and DB[a,l]P) and PAH mixtures (coal tar extract [SRM 1597] and diesel exhaust extract [SRM 1975]). Spots of interest were identified by MALDI-TOF-TOF. Our results have shown alterations in the expression of heat-shock proteins, cytoskeletal proteins, DNA associated proteins, and glycolytic and mitochondrial proteins. The proteins that were universally altered in expression were actin cytoplasmic 1, tubulin alpha and myosin light chain alkali, cyclophilin B, and heterogeneous ribonucleoprotein B1 (a protein involved in access to telomerase and mRNA maturation). Additional proteins with altered expression include histone H2A.1, heat-shock protein 70-2,
galectin-3
, nucleoside diphosphate kinase,
ATP synthase
, and electron transfer flavoprotein. While sharing similarities, each PAH treatment exhibited a unique proteomic fingerprint.
...
PMID:Proteomic analysis of MCF-7 cells treated with benzo[a]pyrene, dibenzo[a,l]pyrene, coal tar extract, and diesel exhaust extract. 1849 19
To evaluate the effect of
galectin-3
in cell cycle regulation of colon cancer cells, we looked for binding molecules interacting with
galectin-3
and examined the changes in cell cycle by suppressing
galectin-3
and the binding molecule. To identify target molecules interacting with
galectin-3
, we analyzed immunoprecipitate of the anti-
galectin-3
antibody obtained from human colon cancer cell line, using matrix-assisted laser desorption ionization-mass spectrometry. We validated subcellular localization of
galectin-3
and
ATP synthase
identified, and
ATP synthase
activity was determined in the presence of
galectin-3
. Cell cycle regulation was monitored after
galectin-3
siRNA transfection.
ATP synthase
b-subunit was identified in immunoprecipitate of the anti-
galectin-3
antibody.
Galectin-3
and
ATP synthase
were co-isolated in the inner membrane vesicles of mitochondria.
Galectin-3
has an inhibitory activity against
ATP synthase
, and intracellular ATP content showed increasing tendency after
galectin-3
suppression. Suppression of
galectin-3
resulted in G0/G1 progression of human colon cancer cells arrested at S, S/G2 and G2/M phase in the presence of doxorubicin, and etoposide or nocodazole, respectively. Compared to cells in which
ATP synthase
d-subunit was suppressed alone, sub-G1 fraction caused by etoposide or nocodazole was decreased in cells with
galectin-3
suppression alone. In conclusion,
galectin-3
co-localized with
ATP synthase
in the inner membrane of mitochondria and has an inhibitory effect on
ATP synthase
in human colon cancer cells. In the presence of cell cycle synchronizing drugs, doxorubicin, etoposide, or nocodazole, suppression of
galectin-3
induced cell cycle progression to G0/G1 phase.
...
PMID:Identification of mitochondrial F(1)F(0)-ATP synthase interacting with galectin-3 in colon cancer cells. 1901 46