The page lists 31 projects related to the topic "microtubules".
| # | |||
|---|---|---|---|
| 1 | MolStruKT | Molecular structure and cell cycle regulated assembly of the kinetochore | 2015 |
| 2 | NewSpindleForce | A new class of microtubules in the spindle exerting forces on kinetochores | 2015 |
| 3 | RECEPIANCE | Molecular reconstitution of epigenetic centromere inheritance | 2015 |
| 4 | DivIDe | A multidisciplinary approach to cell division: From human oocyte to synthetic biology | 2016 |
| 5 | MTUB-ANGIO | Microtubule Dynamics during angiogenesis | 2016 |
| 6 | PlantCellMech | Quantification of the role of mechanical stresses in plant cell morphogenesis. | 2016 |
| 7 | CODECHECK | CRACKING THE CODE BEHIND MITOTIC FIDELITY: the roles of tubulin post-translational modifications and a chromosome separation checkpoint | 2016 |
| 8 | ACENTSPINTUB | Setting up the spindle in the mammalian egg for meiosis and embryo development | 2017 |
| 9 | MECHANICS | Mechanics of cells: the role of intermediate filaments | 2017 |
| 10 | UBIMAPS | Ubiquitin-dependent regulation of the microtubule cytoskeleton | 2017 |
| 11 | TRAIN SPOTTING | Mapping the Intraflagellar Transport - A High-resolution Study of Intraflagellar Transport Trains in Chlamydomonas Cells | 2017 |
| 12 | SAS6-Cep135-CPAP | Towards a molecular understanding of the centriole assembly process | 2017 |
| 13 | ENDODEP | Molecular mechanisms of endosome departure from the spindle in asymmetric cell division | 2017 |
| 14 | CENEVO | A new paradigm for centromere biology:Evolution and mechanism of CenH3-independent chromosome segregation in holocentric insects | 2018 |
| 15 | COAGULANT | CK2-dependent cytoskeletal regulation and molecular signaling of Neutrophil Extracellular Trap (NET) formation | 2018 |
| 16 | ProCenDecl | Synthesis and validation of chemical Probes for Centrosome Declustering: development of potent and selective anti-cancer agents. | 2019 |
| 17 | MiniBRAIN | Investigating the pathogenic mechanisms underlying TUBB2B-related brain malformations using induced pluripotent stem cells and cerebral organoids. | 2019 |
| 18 | ICEBERG | Exploration below the tip of the microtubule | 2018 |
| 19 | HITSCIL | How intraflagellar transport shapes the cilium: a single-molecule systems study | 2018 |
| 20 | Huntingtin hPSC | Unraveling huntingtin function in cortical and striatal human development | 2018 |
| 21 | MechanoTubes | Supramolecular machineries with life-like mechanical functions | 2019 |
| 22 | DYNAPOL | Modeling approaches toward bioinspired dynamic materials | 2019 |
| 23 | CiliaTubulinCode | Self-organization of the cilium: the role of the tubulin code | 2019 |
| 24 | CENGIN | Deciphering and engineering centriole assembly | 2019 |
| 25 | INNERVATE | Investigating the functional impact of neurodegeneration-causing rare variants in the teleost model zebrafish | 2020 |
| 26 | TubInTrain | Tuning Tubulin Dynamics and Interactions to Face Neurotoxicity: a Multidisciplinary Approach for Training and Research | 2019 |
| 27 | ciTTub | Molecular Basis of Tubulin Transport During Cilium Formation | 2020 |
| 28 | DNAGAM | DNA-guided self-organized active materials | 2020 |
| 29 | CYCLOTUBES | Artificial microtubules based on switchable cyclic peptides | 2020 |
| 30 | CATKERB | Total Syntheses of Catharanthine and Keramaphidin B by an Iridium-Catalyzed Reductive Cyclization Cascade | 2020 |
| 31 | LySyT | Understanding the role of lysosomes in the intercellular TNT-mediated spreading of α-synuclein and the impact of lysosomal dysfunction | 2020 |