Master parcours Biomolecular sciences mechanisms and therapeutic targets -BSM2T

Université Toulouse III - Paul Sabatier - Mission Formation Continue et Apprentissage

Non finançable CPF
Tout public
Présentiel
Public admis
Salarié en poste
Demandeur d'emploi
Entreprise
Etudiant
Prix
Nous contacter
Durée
Nous contacter
Niveau visé
Niveau > BAC + 5
Localité
En présentiel
Découvrez les localités disponibles pour suivre cette formation en présentiel.
En savoir plus sur les localités en présentiel
Cette formation est disponible dans les centres de formation suivants:
  • 31 - Toulouse
Cette formation peut être dispensée dans votre entreprise dans les localités suivantes :
  • 09 - Ariège
  • 11 - Aude
  • 12 - Aveyron
  • 30 - Gard
  • 31 - Haute-Garonne
  • 32 - Gers
  • 34 - Hérault
  • 46 - Lot
  • 48 - Lozère
  • 65 - Hautes-Pyrénées
  • 66 - Pyrénées-Orientales
  • 81 - Tarn
  • 82 - Tarn-et-Garonne
Objectifs
International program based on a solid training in structural and functional biochemistry. Students will be offered theoretical and technical training in most of the cutting-edge techniques in this field. Lectures are provided in English language.
Programme
Ce parcours de master comprend deux années (60 ECTS chacune). Première année (M1) : The 2nd year (M2) is an international Master's degree program based on a solid training in structural and functional biochemistry. Students will be offered theoretical and technical training in most of the cutting-edge techniques in this field. Lectures will be provided in English language. Students will be asked to select 3 courses among the 4 following items, in order to tailor their study program to suit their academic and career goals: - Molecular biology & imaging: Principal aims in this course: i) to reinforce or to update your knowledge of the basic principles and methods used in molecular biology and imaging; to show you how to read, understand and analyze published articles concerning molecular biology topics. As it is a technical workshop, you will be asked to raise concerns regarding the experiments, to propose alternative techniques and to discuss the results presented in several publications. - Integrative Structural biology of macromolecules: will provide you the conceptual and practical basis required to understand the current literature and will introduce you to the latest developments in the fields: advanced methodologies such as electron microscopy, X-ray crystallography, small angle X-ray scattering and nuclear magnetic resonance. It also requires a permanent use of computational biology, and the characterisation of interactions between molecules by biophysical methods such as ITC, microscale thermophoresis, SPR or DSF. - Proteomics: Mass spectrometry-based approaches for global characterization of proteomes and interactomes, and structural exploration of proteins: Principle of mass spectrometry applied to proteins and peptides, basics of modern mass spectrometers, and presentation of the main workflows used in proteomic analysis (Bottom-up, top-downmiddle-down, interactomics, Post-Translational Modifications, including sample preparation workflows). - Metabolomics: in-depth understanding of the approaches (metabolomics, fluxomics) allowing the investigation of metabolism at the system level (from cells to whole organisms). NMR-based metabolomics & fluxomics. MS-Based metabolomics & fluxomics. The course includes lectures, exercises, and workshops on specific topics as well as illustrative examples of the application of metabolomics and fluxomics to address current challenges in Human health and in other major research fields. Mandatory courses in Statistics, Bioethics, Scientific analysis and communication, and Basics of management will also be offered. In addition, students will have the opportunity to deepen their knowledge performing a scientifictechnological project within the frame of academic or professional themes. A full description of the Master program can be downloaded here (syllabus).
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