Keywords: نوکودازول; Cerebellar granule neurons; Migration; Leading process; Axon; Microtubules; Glycogen synthase kinase-3; CGN; cerebellar granule neuron; EGL; external granule layer; IGL; internal granule layer; ML; molecular layer; CNS; central nervous system; DIV; days i
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Keywords: نوکودازول; PDI; protein disulfide isomerase; csPDI; Cell surface PDI; pecPDIA1,; peri/epicellular PDIA1; ER; endoplasmic reticulum; BFA; Brefeldin-A; Mon; Monensin; CytD; Cytochalasin-D; Noc; Nocodazole; SC; Sodium chlorate; Neo; Neomycin; Baf; bafilomycin; NEM; N-e
Keywords: نوکودازول; Dominant lethality; Nocodazole; Germ cells; Genomic alterations
Keywords: نوکودازول; DAPK2; Apoptosis; Tubulin; Nocodazole; DAPK; death-associated protein kinase; TNF; tumor necrosis factor; CaM; calmodulin; GST; glutathione S-transferase; MALDI-TOF MS; matrix-assisted laser desorption/ionization time-of-flight mass spectrometry; PARP; po
Keywords: نوکودازول; BCAR3; breast cancer anti-estrogen resistance 3; Cas; Crk-associated substrate; CHAT-H; Cas/HEF1-associated signal transducer-hematopoietic; CHX; cycloheximide; CRC; colorectal cancer; FAK; focal adhesion kinase; GEF; guanine nucleotide-exchange factor; H
Keywords: نوکودازول; MTs; microtubules; OE; olfactory neuroepithelium; Nz; nocodazole; NMDA; N-methyl-d-aspartate; MAPs; microtubule associated proteins; DISC1; disrupted-in-schizophrenia-1; DLPFC; dorsolateral prefrontal cortex; NUDEL; nuclear distribution protein nude-like
Use of CK-548 and CK-869 as Arp2/3 complex inhibitors directly suppresses microtubule assembly both in vitro and in vivo
Keywords: نوکودازول; Arp2/3 complex; CK-869; CK-548; Microtubule; Arp2/3 complex; Actin-related protein 2/3 complex; MT; microtubule; MTOC-TMA; microtubule organizing center and transient microtubule array; NPFs; nucleation promoting factors; NOC; Nocodazole; Lat B; latruncul
Multi-tasking Sulf1/Sulf2 enzymes do not only facilitate extracellular cell signalling but also participate in cell cycle related nuclear events
Keywords: نوکودازول; Sulf1; Sulf2; Cell cycle; Nocodazole; Nuclear mobilisation;
In vivo imaging of Mauthner axon regeneration, remyelination and synapses re-establishment after laser axotomy in zebrafish larvae
Keywords: نوکودازول; Mauthner cell; Laser axotomy; Degeneration; Regeneration; Remyelination; Synapses re-establishment; Nocodazole;
Interactions between monomeric CCTδ and p150Glued: A novel function for CCTδ at the cell periphery distinct from the protein folding activity of the molecular chaperone CCT
Keywords: نوکودازول; CCT; chaperonin containing tailless complex polypeptide 1; SIM; structured illumination microscopy; Nz; Nocodazole; Chaperonin; Cytoskeleton; Microtubule-mediated transport; Plasma membrane; Cell migration;
Dynamic L-type CaV1.2 channel trafficking facilitates CaV1.2 clustering and cooperative gating
Keywords: نوکودازول; TIRFM; Total Internal Reflection Fluorescence Microscopy; tRFP; tag Red Fluorescence Protein; FBS; fetal bovine serum; Noco; nocodazole; Cyt-D; cytochalasin D; TIR-FRAP; Total Internal Reflection - Fluorescence Recovery after Photobleaching; MSD; mean s
Nocodazole treatment interrupted Brucella abortus invasion in RAW 264.7 cells, and successfully attenuated splenic proliferation with enhanced inflammatory response in mice
Keywords: نوکودازول; B. abortus; Nocodazole; Macrophages; F-actin; MAPKs; Cytokine; BCVs; Brucella-containing vacuoles; MAPKs; mitogen-activated protein kinases;
Aplysia kurodai-derived glycosaminoglycans increase the phagocytic ability of macrophages via the activation of AMP-activated protein kinase and cytoskeletal reorganization in RAW264.7 cells
Keywords: نوکودازول; AMPK; Aplysia; Glycosaminoglycans; Inflammation; Macrophage; Phagocytosis; AICAR (PubChem CID: 46780289); Compound C (PubChem CID: 11524144); Nocodazole (PubChem CID: 4122); Cytochalasin D (PubChem CID: 5458428); MTT (PubChem CID: 64965); AICAR; 5-aminoim
The GSK3–MAP1B pathway controls neurite branching and microtubule dynamics
Keywords: نوکودازول; DRG neurons; Cell neurobiology; Cytoskeleton; Microtubule-associated protein 1B; Neurite outgrowth; Regeneration; GSK signaling; Acetylated microtubules; Detyrosinated microtubules; Tyrosinated microtubules; Nocodazole; SB216763 GSK inhibitor; COS-7 cells
Cell cycle regulation of human DNA repair and chromatin remodeling genes
Keywords: نوکودازول; MMR; mismatch repair; NER; nucleotide excision repair; BER; base excision repair; DSB; DNA double-strand break; NHEJ; non-homologous end joining; HR; homologous recombination; FA; Fanconi anemia; SS; serum starvation; TT; double thymidine block; NZ; nocod
Robust G2 pausing of adult stem cells in Hydra
Keywords: نوکودازول; Flow cytometry method; Epithelial stem cells; Interstitial stem cells; G2 pausing; Cell cycling; AEP_cnnos1 and AEP_Icy1 transgenic Hydra; ASCs; adult stem cells; BLI; BrdU-labeling index; BrdU; 5-bromo-2׳-deoxyuridine; CV; coefficient of variation; DM;
Buckwheat trypsin inhibitor enters Hep G2 cells by clathrin-dependent endocytosis
Keywords: نوکودازول; rBTI; recombinant buckwheat trypsin inhibitor; Tf; transferrin; DAPI; 2-(4-amidinophenyl)-1H-indole-6-carboxamidine; MDC; monodansylcadaverine; FITC; fluorescein isothiocyanate; DMSO; dimethyl sulfoxide; Noc; nocodazole; HEPES; (4-(2-hydroxyethyl)-1-piper
Acoustic detection of melanosome transport in Xenopus laevis melanophores
Keywords: نوکودازول; Xenopus laevis; Melanophores; Melanosomes; QCM-D; Latrunculin; Nocodazole
Enrichment of cell populations in metaphase, anaphase, and telophase by synchronization using nocodazole and blebbistatin: A novel method suitable for examining dynamic changes in proteins during mitotic progression
Keywords: نوکودازول; Cell cycle synchronization; Blebbistatin; Anaphase; Nocodazole; Mobility shift; c-Yes;
Enhanced acetylation of alpha-tubulin in influenza A virus infected epithelial cells
Keywords: نوکودازول; Influenza A; Tubulin; Acetylation; Histone deacetylase 6; Rho; AcMTs; acetylated microtubules; AcTub; acetylated α-tubulin; BIM; bisindolylmaleimide; CdTB; Clostridium difficile toxin B; HDAC6; histone deacetylase 6; hpi; hour post-infection; IAV; influe
Unconventional actin conformations localize on intermediate filaments in mitosis
Keywords: نوکودازول; Actin; Lower dimer actin; Nuclear actin; Actin antibody 1C7; Actin antibody 2G2; HEK 293T; Vimentin; Nocodazole;
Disruption of haemocyte function by exposure to cytochalasin b or nocodazole increases the susceptibility of Galleria mellonella larvae to infection
Keywords: نوکودازول; Cytochalasin b; Galleria; Haemocyte; Mini-host; Nocodazole; NeutrophilDMSO, dimethy sulphoxide; IPS, insect physiological saline; PMA, phorbol-12-myristate-13-acetate
Nocodazole induces mitotic cell death with apoptotic-like features in Saccharomyces cerevisiae
Keywords: نوکودازول; ROS; reactive oxygen species; APC/C; anaphase-promoting complex/cyclosome; SAC; spindle assembly checkpoint; PI; propidium iodide; TUNEL; terminal deoxynucleotidyl transferase-mediated dUTP nick-end-labeling; GFP; green fluorescent protein; Budding yeast;
Postactivation treatment with nocodazole maintains normal nuclear ploidy of cloned pig embryos by increasing nuclear retention and formation of single pronucleus
Keywords: نوکودازول; Nocodazole; Nuclear remodeling; Pig; Postactivation; Somatic cell nucleus transfer
MAP1a associated light chain 3 increases microtubule stability by suppressing microtubule dynamics
Keywords: نوکودازول; Microtubules; MAP1a; LC1; LC2; LC3; Neuronal microtubule associated proteins; Microtubule dynamics; Light chain; Nocodazole
Microtubule-dependent and microtubule-independent steps in Crimean-Congo hemorrhagic fever virus replication cycle
Keywords: نوکودازول; CCHFV; Nairovirus; Nocodazole; Paclitaxel; Microtubules
The chemotherapeutic agents nocodazole and amsacrine cause meiotic delay and non-disjunction in spermatocytes of mice
Keywords: نوکودازول; Amsacrine; Aneuploidy; Mouse; Nocodazole; Sperm-FISH
Survival of aneuploid, micronucleated and/or polyploid cells: Crosstalk between ploidy control and apoptosis
Keywords: نوکودازول; Aneuploidy; Polyploidy; Apoptosis; Nocodazole
Effect of inhibition of dynein function and microtubule-altering drugs on AAV2 transduction
Keywords: نوکودازول; Adeno-associated virus; Microtubule; Dynamitin; Nocodazole; Vinblastine; Taxol; Trafficking
Distinct contributions of microtubule subtypes to cell membrane shape and stability
Keywords: نوکودازول; Atomic force microscopy; Microtubules; Nocodazole; Metastability; Young's modulus
Visualization of microtubule-mediated transport of influenza viral progeny ribonucleoprotein
Keywords: نوکودازول; Influenza A virus; Nucleoprotein; Monoclonal antibody; Microtubule organizing center; Nocodazole
A comparative study of the cytoskeleton binding drugs nocodazole and taxol with a mammalian cell quartz crystal microbalance biosensor: Different dynamic responses and energy dissipation effects
Keywords: نوکودازول; Quartz crystal microbalance; Endothelial cells; Biosensor; Microtubules; Cytoskeleton; Nocodazole; Taxol; Dynamics; Energy dissipation
Analysis of gene expression induced by microtubule-disrupting agents in HeLa cells using microarray
Keywords: نوکودازول; DNA chip; Nocodazole; Microtubule; HeLa cells; Mitosis; Apoptosis
Formin-1 protein associates with microtubules through a peptide domain encoded by exon-2
Keywords: نوکودازول; Formin; Microtubule; Fmn1; Cytoskeleton; Actin; GFP; Nocodazole; FH1; FH2; FH3
Phosphorylation of the Pro-X-Thr-Pro site in phosphatase inhibitor-2 by cyclin-dependent protein kinase during M-phase of the cell cycle
Keywords: نوکودازول; CDC2; Cyclin B1; GSK3; ERK1/2; MAPK; MEK; Histone H3; Nocodazole; Roscovitine;
Reticulon 3 is involved in membrane trafficking between the endoplasmic reticulum and Golgi
Keywords: نوکودازول; Bafilomycin A1; Brefeldin A; Endoplasmic reticulum; ERIGC-53; Golgi apparatus; Nocodazole; Reticulon; Vesicular transport;
Nuclear phospholipase C-β1b activation during G2/M and late G1 phase in nocodazole-synchronized HL-60 cells
Keywords: نوکودازول; PLC; phospholipase C; PtdIns(4,5)P2; phosphatidylinositol 4,5-bisphosphate; DAG; diacylglycerol; Ins(1,4,5)P3; inositol(1,4,5)P3; PKC; protein kinase C; PI3K; phosphatidylinositol 3-kinase; MAPK; mitogen-activated protein kinase; MEK; MAP kinase kinase; P
Comparison of the relative sensitivity of human lymphocytes and mouse splenocytes to two spindle poisons
Keywords: نوکودازول; Micronucleus assay; Mouse splenocyte; Human lymphocyte; Nocodazole; Paclitaxel;
Recovery of the ciliate Paramecium multimicronucleatum following bacterial infection with Holospora obtusa
Keywords: نوکودازول; Endocytobiosis; Holospora obtusa; Infection; Nocodazole; Paramecium multimicronucleatum;
Kinesin is involved in protecting nascent microtubules from disassembly after recovery from nocodazole treatment
Keywords: نوکودازول; Microtubule; Kinesin; Nocodazole; Golgi;
Giardia lamblia: Evaluation of the in vitro effects of nocodazole and colchicine on trophozoites
Keywords: نوکودازول; Giardia lamblia; Cytoskeleton; Drugs; Nocodazole; Colchicine;
Non-invasive method to assess genotoxicity of nocodazole interfering with spindle formation in mammalian oocytes
Keywords: نوکودازول; Oocyte; Spindle; Meiosis; Nondisjunction; Trisomy; Polscope; Nocodazole; Aneuploidy;
Binding of Par-4 to the actin cytoskeleton is essential for Par-4/Dlk-mediated apoptosis
Keywords: نوکودازول; Par-4; prostate apoptosis response gene-4; DAP-kinase; death-associated protein kinase; Dlk; DAP like kinase; LZ; leucine zipper; DD; death domain; SAC; selective for apoptosis induction in cancer cells; GFP; green fluorescent protein; CytD; cytochalasin
Dissection of keratin dynamics: different contributions of the actin and microtubule systems
Keywords: نوکودازول; Live cell imaging; Green fluorescent protein; Nocodazole; Latrunculin; Cytoskeleton; Intermediate filament; Keratin; Actin; Tubulin;