Small angle X-ray scattering study of calreticulin reveals conformational plasticity
pmid: 18559259
Small angle X-ray scattering study of calreticulin reveals conformational plasticity
Calreticulin plays a central role in vital cell processes such as protein folding, Ca(2+) homeostasis and immunogenicity. Even so, only limited three-dimensional structural information is presently available. We present a series of Small-Angle X-ray Scattering data on human placenta calreticulin. The data from the calreticulin monomer reveal the shape of calreticulin in solution: The previously structurally un-described C-terminal is seen as a globular domain, and the P-domain beta-hairpin extends from the N-domain in a spiral like conformation. In the calreticulin solution dimer, the N-, C-, and P-domains are easily identified, and the P-domain is in an extended conformation connecting to the second calreticulin molecule. The SAXS solution data enables the construction of a medium-resolution model of calreticulin. In the light of the unresolved chaperone mechanism of calreticulin and calnexin, we discuss the functional consequences of the conformational plasticity of the calreticulin P-domain.
- University of Copenhagen Denmark
- University of Southern Denmark Denmark
- University of Copenhagen Denmark
- Statens Serum Institut Denmark
Small Angle, Models, Molecular, Protein Structure, Protein Conformation, Placenta, /dk/atira/pure/core/keywords/TheFacultyOfPharmaceuticalSciences, Quaternary, Scattering, X-Ray Diffraction, Former Faculty of Pharmaceutical Sciences, Models, Pregnancy, Scattering, Small Angle, Humans, Protein Structure, Quaternary, Molecular, Peptide Fragments, Protein Structure, Tertiary, Solutions, Female, Calreticulin, Dimerization, Tertiary
Small Angle, Models, Molecular, Protein Structure, Protein Conformation, Placenta, /dk/atira/pure/core/keywords/TheFacultyOfPharmaceuticalSciences, Quaternary, Scattering, X-Ray Diffraction, Former Faculty of Pharmaceutical Sciences, Models, Pregnancy, Scattering, Small Angle, Humans, Protein Structure, Quaternary, Molecular, Peptide Fragments, Protein Structure, Tertiary, Solutions, Female, Calreticulin, Dimerization, Tertiary
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