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11 Jul 2012 – Paper published in the journal Molecular Cell using Human Proteome Folding project results
A paper was published in the journal Molecular Cell, which used results from the Human Proteome Folding project in identifying proteins which regulate processes in human cells.  
  Tags: Project Update , Research Paper
21 Jun 2012 – Paper published in the journal Genome Biology and Evolution using Human Proteome Folding project results
Researchers have published a paper in the journal Genome Biology and Evolution, which documents their findings studying a number of plant genomes, their proteomes, evolution and protein structure.  
  Tags: Project Update , Research Paper
08 Aug 2011 – The Human Proteome Folding project Publishes Paper in Genome Research
The Human Proteome Folding project researchers have published a paper in the journal Genome Research, which announces the availability of their data base of predicted protein structures, their validation methods and how this augments other information about these proteins, thus helping to solve a critical problem for biologists.  
  Tags: Project Update , Research Paper
08 Aug 2008 – Human Proteome Folding - Phase 1 publishes a paper in Cell
In this paper, the authors discuss their experimental strategy to efficiently identify interaction domains and generated a domain-based interactome network for proteins involved in C. elegans early-embryonic cell divisions.  
  Tags: Project Update , Research Paper
28 Dec 2007 – Human Proteome Folding - Phase 1 publishes a paper in Cell
Title: "A Predictive Model for Transcriptional Control of Physiology in a Free Living Cell"  
  Tags: Project Update , Research Paper
20 Mar 2007 – Human Proteome Folding - Phase 1 publishes a paper in the PLoS Biology Journal
In this paper, the authors discuss the assignment yeast protein domains to SCOP superfamilies.  
  Tags: Project Update , Research Paper
05 Feb 2007 – Human Proteome Folding - Phase 1 publishes an article in The Journal of Experimental Medicine
In this paper, the authors demonstrate that mouse and human TLR5 discriminate between different flagellins, and we use this difference to map the flagellin recognition site on TLR5 to 228 amino acids of the extracellular domain.  
  Tags: Project Update , Research Paper
30 Nov 2006 – Human Proteome Folding - Phase 1 publishes a paper in Bioinformatics
Title: "BioNetBuilder: automatic integration of biological networks"  
  Tags: Project Update , Research Paper
05 Apr 2005 – Human Proteome Folding - Phase 1 Thesis - Lund University
This thesis covers the authors efforts to develop a method to use ab initio protein structure prediction to detect distant homologs and use the homologs to annotate proteins from the genome of Saccharomyces cerevisiae.  
  Tags: Project Update , Research Paper

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