Search for dissertations about: "Ola Söderberg"
Showing result 11 - 15 of 17 swedish dissertations containing the words Ola Söderberg.
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11. Advancing DNA-based proximity methods
Abstract : Cellular functions are governed by intricate chains of interactions between proteins. In order to properly understand cellular biology one must look into, not only protein function, but also its interacting network. READ MORE
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12. High Content Analysis of Proteins and Protein Interactions by Proximity Ligation
Abstract : Fundamental to all biological processes is the interplay between biomolecules such as proteins and nucleic acids. Studies of interactions should therefore be more informative than mere detection of expressed proteins. Preferably, such studies should be performed in material that is as biologically and clinically relevant as possible, i.e. READ MORE
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13. Analysis of PDGF receptor internalization and signaling using proximity ligation assays
Abstract : Cell signaling is mediated by signaling proteins that relay the signal in an intricate network of interactions before the signal is translated into a biological response. Short linear motifs (SLiMs) in intrinsically disordered regions of proteins serve as docking sites for protein interaction in all aspects of cell regulation including signal transduction. READ MORE
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14. Visualizing Interacting Biomolecules In Situ
Abstract : Intra- and intercellular information is communicated by posttranslational modifications (PTMs) and protein-protein interactions, transducing information over cell membranes and to the nucleus. A cells capability to respond to stimuli by several highly complex and dynamic signaling networks provides the basis for rapid responses and is fundamental for the cellular collaborations required in a multicellular organism. READ MORE
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15. Proximity Ligation and Barcoding Assays : Tools for analysis of proteins and protein complexes
Abstract : Proteins are fundamental structural, enzymatic and regulatory components of cells. Analysis of proteins, such as by measuring their concentrations, characterizing their modifications, and detecting their interactions, provides insights in how biological systems work physiologically or pathologically at the molecular level. READ MORE