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         <p>[[Help:Contents#For_authors:_contributing_content|How to add content to Proteopedia]]</p>
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         <p>[[I3DC|About Interactive 3D Complements - '''I3DCs''']]</p>
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         <p>[[How to get an I3DC for your paper]]</p>
         <p>[[How to get an I3DC for your paper]]</p>
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         <p>[[Teaching strategies using Proteopedia]]</p>
         <p>[[Teaching strategies using Proteopedia]]</p>
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Revision as of 16:00, 30 September 2025

ISSN 2310-6301
     
       As life is more than 2D, Proteopedia helps to bridge the gap between 3D structure & function of biomacromolecules
     
     
       Proteopedia presents this information in a user-friendly way as a collaborative & free 3D-encyclopedia of proteins & other biomolecules.
     
Selected Research Pages In Journals Education
Green Fluorescent Protein

by Eran Hodis
Green fluorescent protein (GFP) is a bioluminescent polypeptide isolated from the jellyfish Aequorea victoria. GFP converts the blue chemiluminescence of aequorin into green fluorescent light. In the laboratory, GFP can be incorporated into a variety of biological systems in order to function as a marker protein. Since its discovery in 1962, GFP has become a significant contributor to the research of monitoring gene expression, localization, mobility, traffic, or interactions between various membrane and cytoplasmic proteins.

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Structural flexibility of the periplasmic protein, FlgA, regulates flagellar P-ring assembly in Salmonella enterica.

H Matsunami, YH Yoon, VA Meshcheryakov, K Namba, FA Samatey. Scientific Reports 2016 doi: 10.1038/srep27399
A periplasmic flagellar chaperone protein, FlgA, is required for P-ring assembly in bacterial flagella of taxa such as Salmonella enterica or Escherichia coli. Here we present the open and closed crystal structures of FlgA from Salmonella enterica serovar Typhimurium, grown under different crystallization conditions. An intramolecular disulfide cross-linked form of FlgA caused a dominant negative effect on motility of the wild-type strain.

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2025 Nobel Prize

by Wayne Decatur
The 2025 Nobel Prize in Chemistry was awarded for studies of metal-organic frameworks. Against expectations, the building blocks of metal-organic frameworks turned out to form networks with large cavities and the materials have a wide range of far-reaching practical applications.

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