<p>We describe an application of transfer learning, where we combine experimental mass spectrometry-based spatial proteomics and freely available data from repositories to reliably infer sub-cellular localisation of proteins. More details - http://biorxiv.org/content/early/2015/07/07/022152; software - http://bioconductor.org/packages/release/bioc/html/pRoloc.html.</p
Many new results are being obtained in bioinformatics through the application of machine learning an...
In biology, localisation is function - understanding the sub-cellular localisation of proteins is pa...
Spatial proteomics is the systematic study of protein sub-cellular localisation. In this workflow, w...
<p>An application of transfer learning, where we combine experimental mass spectrometry-based spatia...
<div><p>Sub-cellular localisation of proteins is an essential post-translational regulatory mechanis...
Spatial proteomics is the systematic study of protein sub-cellular localisation. In this workflow, w...
This vignette illustrates the application of a transfer learning algorithm to assign proteins to sub...
International audienceQuantitative mass-spectrometry-based spatial proteomics involves elaborate, ex...
Quantitative mass spectrometry based spatial proteomics involves elaborate, expensive and time consu...
<p>Organelle proteomics, or spatial proteomics, is the systematic study of protein sub-cellular loca...
Knowledge of the subcellular location of a protein gives valuable insight into its function. The fie...
International audienceMOTIVATION: Experimental spatial proteomics, i.e the high-throughput assignmen...
Eukaryotic cells are highly compartmentalized and protein subcellular localization critically influe...
Protein subcellular localization is tightly controlled and intimately linked to protein function in ...
Keynote lecture for the Introduction to Integrative Omics course at the EMBL-EBI on 8 March 2016. Tw...
Many new results are being obtained in bioinformatics through the application of machine learning an...
In biology, localisation is function - understanding the sub-cellular localisation of proteins is pa...
Spatial proteomics is the systematic study of protein sub-cellular localisation. In this workflow, w...
<p>An application of transfer learning, where we combine experimental mass spectrometry-based spatia...
<div><p>Sub-cellular localisation of proteins is an essential post-translational regulatory mechanis...
Spatial proteomics is the systematic study of protein sub-cellular localisation. In this workflow, w...
This vignette illustrates the application of a transfer learning algorithm to assign proteins to sub...
International audienceQuantitative mass-spectrometry-based spatial proteomics involves elaborate, ex...
Quantitative mass spectrometry based spatial proteomics involves elaborate, expensive and time consu...
<p>Organelle proteomics, or spatial proteomics, is the systematic study of protein sub-cellular loca...
Knowledge of the subcellular location of a protein gives valuable insight into its function. The fie...
International audienceMOTIVATION: Experimental spatial proteomics, i.e the high-throughput assignmen...
Eukaryotic cells are highly compartmentalized and protein subcellular localization critically influe...
Protein subcellular localization is tightly controlled and intimately linked to protein function in ...
Keynote lecture for the Introduction to Integrative Omics course at the EMBL-EBI on 8 March 2016. Tw...
Many new results are being obtained in bioinformatics through the application of machine learning an...
In biology, localisation is function - understanding the sub-cellular localisation of proteins is pa...
Spatial proteomics is the systematic study of protein sub-cellular localisation. In this workflow, w...