Sort by
Refine Your Search
-
Listed
-
Category
-
Country
- United States
- United Kingdom
- Germany
- France
- Sweden
- Spain
- Netherlands
- Poland
- Portugal
- Finland
- Belgium
- Switzerland
- Canada
- Italy
- Austria
- Denmark
- Norway
- Morocco
- Singapore
- Czech
- United Arab Emirates
- Australia
- Brazil
- Japan
- Ireland
- India
- Luxembourg
- South Africa
- Hong Kong
- China
- Hungary
- Latvia
- Croatia
- Greece
- Malta
- Mexico
- New Zealand
- Romania
- Slovenia
- South Korea
- Taiwan
- 31 more »
- « less
-
Program
-
Field
-
precision oncology strategies targeting the YAP/TAZ–TEAD pathway in head and neck squamous cell carcinoma. By combining molecular and spatial profiling, functional genomics, patient-derived tumor models and
-
rate and will receive partial reimbursement for public transportation fares if necessary. Despite the spectacular success of AI-based approaches for protein structure prediction, reliable 3D modeling
-
Apply online now: https://karriere.klinikum.uni-heidelberg.de/index.php?ac=application&jobad_id=28177 PhD position (m/w/d) Stellenanzeige merken Stellenanzeige teilen starting at the earliest
-
. The successful candidate will leverage a combination of advanced molecular and systems neuroscience methodologies to advance our understanding of selective autophagy and lipid metabolism in glial cells
-
mechanisms using bioinformatics and molecular biology methods. The candidate will be responsible for cell culture, qPCR, western blot, and animal work. Position Details Additional Information Posting Category
-
, presentations, and collaborative research contributions, as well as experience with molecular biology techniques, tumor models, sequencing- or microscopy-based analyses, and scientific writing. Strong
-
European Molecular Biology Laboratory (EMBL) | Brandenburg an der Havel, Brandenburg | Germany | about 2 months ago
in Heidelberg include multi-modal data integration towards whole-cell models, prediction of protein function and protein-ligand interactions (Molecular Systems Biology ), regulatory networks, single
-
, including diagnosis, molecular interpretation, treatment selection, and longitudinal care. This may include: Multimodal language model architectures Integration of clinical context, biomedical literature
-
, including support for our in vivo mouse models of neurodegeneration. Laboratory responsibilities will include routine molecular biology (PCR, DNA sequencing, genotyping, cloning) and routine biochemistry
-
in the spatial organisation of chromatin and genomic instability in healthy and cancer cells. The project will use TET1 knockout, catalytically inactive, and overexpression models. Key responsibilities