International audienceThis review explores various aspects of the interaction between microtubule targeting agents and tubulin, including binding site, affinity, and drug resistance. Starting with the basics of tubulin polymerization and microtubule targeting agent binding, we then highlight how the three-dimensional structures of drug-tubulin complexes obtained on stabilized tubulin are seeded by precise biological and biophysical data. New avenues opened by thermodynamics analysis, high throughput screening, and proteomics for the molecular pharmacology of these drugs are presented. The amount of data generated by biophysical, proteomic and cellular techniques shed more light onto the microtubule-tubulin equilibrium and tubulin-drug inter...
International audienceMicrotubules are still a promising target for new therapeutic agents. Thus, th...
Microtubule (MT) dynamic behaviour is an attractive drug target for chemotherapy, whose regulation b...
Microtubules (MTs) play important and diverse roles in eukaryotic cells. Their function and biophysi...
International audienceThis review explores various aspects of the interaction between microtubule ta...
Microtubules are key components of the eukaryotic cytoskeleton with essential roles in cell division...
Microtubules (MTs) are a highly successful target for anticancer therapy. MT-stabilizing agents (MSA...
Microtubule-targeting agents have received considerable interest as potential tumour-selective anti-...
<p>(A) <i>In-vitro</i> tubulin polymerization assays were used to test the effect of the 212 mitotic...
International audienceEven though commercialized anticancer drugs are now produced by pharmaceutical...
In eukaryotic cells, microtubules are highly dynamic filaments of the cytoskeleton where they are in...
International audienceCompounds targeting microtubules are widely used in cancer therapy with a prov...
The microtubule (MT) represents a highly validated target for therapy. Insights into the complex nat...
Microtubules are highly dynamic polymers of α,β-tubulin dimers which play an essential role in numer...
Microtubules (MTs), which are highly dynamic assemblies of the protein tubulin, play important and d...
Tubulin targeting agents constitute an important class of anticancer drugs. By acting either as micr...
International audienceMicrotubules are still a promising target for new therapeutic agents. Thus, th...
Microtubule (MT) dynamic behaviour is an attractive drug target for chemotherapy, whose regulation b...
Microtubules (MTs) play important and diverse roles in eukaryotic cells. Their function and biophysi...
International audienceThis review explores various aspects of the interaction between microtubule ta...
Microtubules are key components of the eukaryotic cytoskeleton with essential roles in cell division...
Microtubules (MTs) are a highly successful target for anticancer therapy. MT-stabilizing agents (MSA...
Microtubule-targeting agents have received considerable interest as potential tumour-selective anti-...
<p>(A) <i>In-vitro</i> tubulin polymerization assays were used to test the effect of the 212 mitotic...
International audienceEven though commercialized anticancer drugs are now produced by pharmaceutical...
In eukaryotic cells, microtubules are highly dynamic filaments of the cytoskeleton where they are in...
International audienceCompounds targeting microtubules are widely used in cancer therapy with a prov...
The microtubule (MT) represents a highly validated target for therapy. Insights into the complex nat...
Microtubules are highly dynamic polymers of α,β-tubulin dimers which play an essential role in numer...
Microtubules (MTs), which are highly dynamic assemblies of the protein tubulin, play important and d...
Tubulin targeting agents constitute an important class of anticancer drugs. By acting either as micr...
International audienceMicrotubules are still a promising target for new therapeutic agents. Thus, th...
Microtubule (MT) dynamic behaviour is an attractive drug target for chemotherapy, whose regulation b...
Microtubules (MTs) play important and diverse roles in eukaryotic cells. Their function and biophysi...