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1.
Article in English | WPRIM | ID: wpr-147327

ABSTRACT

New colchicine analogs have been synthesized with the aim of developing stronger potential anticancer activities. Among the analogs, CT20126 has been previously reported to show immunosuppressive activities. Here, we report that CT20126 also shows potential anticancer effects via an unusual mechanism: the modulation of microtubule integrity and cell cycle arrest at the G2/M phase before apoptosis. When we treated COS-7 cells with CT20126 (5 muM), the normal thread-like microtubules were disrupted into tubulin dimers within 10 min and thereafter repolymerized into short, thick filaments. In contrast, cells treated with the same concentration of colchicine exhibited microtubule depolymerization after 20 min and never underwent repolymerization. Furthermore, optical density (OD) analysis (350 nm) with purified tubulin showed that CT20126 had a higher repolymerizing activity than that of Taxol, a potent microtubule-polymerizing agent. These results suggest that the effects of CT20126 on microtubule integrity differ from those of colchicine: the analog first destabilizes microtubules and then stabilizes the disrupted tubulins into short, thick polymers. Furthermore, CT20126 induced a greater level of apoptotic activity in Jurkat T cells than colchicine (assessed by G2/M arrest, caspase-3 activation and cell sorting). At 20 nM, CT20126 induced 47% apoptosis among Jurkat T cells, whereas colchicine induced only 33% apoptosis. Our results suggest that the colchicine analog CT20126 can potently induce apoptosis by disrupting microtubule integrity in a manner that differs from that of colchicine or Taxol.


Subject(s)
Animals , Cattle , Humans , Acetylation/drug effects , Apoptosis/drug effects , COS Cells , Caspase 3/metabolism , Cell Division/drug effects , Chlorocebus aethiops , Colchicine/analogs & derivatives , Enzyme Activation/drug effects , G2 Phase/drug effects , Jurkat Cells , Microtubules/metabolism , Poly(ADP-ribose) Polymerases/metabolism , Tubulin/metabolism , Tubulin Modulators/chemistry
2.
Article in English | WPRIM | ID: wpr-171913

ABSTRACT

Phosphatidylinositol phosphates (PtdInsPs) are ubiquitous membrane phospholipids that play diverse roles in cell growth and differentiation. To clarify the regulation mechanism acting on neurofilament light chain (NF-L) self assembly, we examined the effects of various PtdInsPs on this process. We found that PtdInsPs, including PI(4,5)P2, directly bind to the positively charged Arg54 of murine NF-L, and this binding promotes NF-L self assembly in vitro. Mutant NF-L (R53A/R54A) proteins lacking binding affinity to PtdInsPs did not have the same effect, but the mutant NF-L proteins showed greater self assembly than the wild-type in the absence of any PtdInsP. These results collectively suggest that Arg54 plays a pivotal role in NF-L self assembly by binding with PtdInsPs.


Subject(s)
Animals , Mice , Fluorescent Antibody Technique , Mutation/genetics , Neurofilament Proteins/genetics , Phosphatidylinositol Phosphates/metabolism , Phospholipase C gamma/metabolism , Protein Multimerization
3.
Article in English | WPRIM | ID: wpr-203591

ABSTRACT

Growth factor stimulation induces Y783 phosphorylation of phosphoinositide-specific PLC-gamma1, and the subsequent activation of this enzyme in a cellular signaling cascade. Previously, we showed that a double point mutation, Y509A/F510A, of PLC-gamma1, abolished interactions with translational elongation factor 1-alpha. Here, we report that the Y509A/F510A mutant PLC-gamma1 displayed extremely high levels of Y783 phosphorylation and enhanced catalytic activity, compared to wild-type PLC-gamma1, upon treatment of COS7 cells with EGF. In quiescent COS7 cells, the Y509A/F510A mutant PLC-gamma1 exhibited a constitutive hydrolytic activity, whereas the wild-type counterpart displayed a basal level of activity. Upon treatment of COS7 cells with EGF, the Y783F mutation in Y509A/F510A PLC-gamma1 (Y509A/F510A/Y783F triple mutant) cells also led to an enhanced catalytic activity, whereas Y783F mutation alone displayed a basal level of activity. Our results collectively suggest that the Y509A/F510A mutant is more susceptible to receptor tyrosine kinase-induced Y783 phosphorylation than is wild-type PLC-gamma1, but no longer requires Y783 phosphorylation step for the Y509A/F510A mutant PLC-gamma1 activation in vivo.


Subject(s)
Animals , Rats , Amino Acid Substitution/drug effects , COS Cells , Chlorocebus aethiops , Enzyme Activation/drug effects , Epidermal Growth Factor/pharmacology , Hydrolysis/drug effects , Mutant Proteins/metabolism , Phosphatidylinositols/metabolism , Phospholipase C gamma/genetics , Phosphorylation/drug effects , Phosphotyrosine/metabolism , Point Mutation/genetics
4.
Article in English | WPRIM | ID: wpr-96564

ABSTRACT

Phosphoinositide-specific phospholipase C-gamma1 (PLC-gamma1) has two pleckstrin homology (PH) domains: an amino-terminal domain (PH1) and a split PH domain (PH2). Here, we show that overlay assay of bovine brain tubulin pool with glutathione-S-transferase (GST)-PLC-gamma1 PH domain fusion proteins, followed by matrix-assisted laser-desorption ionization-time of flight mass spectrometry (MALDI-TOF MS), identified 68-kDa neurofilament light chain (NF-L) as a binding protein of amino-terminal PH domain of PLC-gamma1. NF-L is known as a component of neuronal intermediate filaments, which are responsible for supporting the structure of myelinated axons in neuron. PLC-gamma1 and NF-L colocalized in the neurite in PC12 cells upon nerve growth factor stimulation. In vitro binding assay and immunoprecipitation analysis also showed a specific interaction of both proteins in differentiated PC12 cells. The phosphatidylinositol 4, 5-bisphosphate [PI(4,5)P2] hydrolyzing activity of PLC-gamma1 was slightly decreased in the presence of purified NF-L in vitro, suggesting that NF-L inhibits PLC-gamma1. Our results suggest that PLC-gamma1-associated NF-L sequesters the phospholipid from the PH domain of PLC-gamma1.


Subject(s)
Rats , Animals , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization , Protein Interaction Mapping , Protein Biosynthesis/drug effects , Protein Binding/drug effects , Phosphoproteins/chemistry , Phospholipase C gamma/antagonists & inhibitors , Phosphatidylinositol 4,5-Diphosphate/metabolism , Peptides/chemistry , PC12 Cells , Neurofilament Proteins/chemistry , Nerve Growth Factor/pharmacology , Molecular Weight , Molecular Sequence Data , Microtubules/metabolism , Microscopy, Fluorescence , Isoenzymes/metabolism , Glutathione Transferase/metabolism , Blotting, Far-Western , Blood Proteins/chemistry , Binding Sites , Amino Acid Sequence
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