A hidden aggregation-prone structure in the heart of hypoxia inducible factor prolyl hydroxylase.
Creators
- 1. University of Tehran
- 2. Massachusetts Institute of Technology
- 3. University of North Carolina at Chapel Hill
- 4. Clemson University
Description
Prolyl hydroxylase domain-containing protein 2 (PHD2), as one of the most important regulators of angiogenesis and metastasis of cancer cells, is a promising target for cancer therapy drug design. Progressive studies imply that abnormality in PHD2 function may be due to misfolding. Therefore, study of the PHD2 unfolding pathway paves the way for a better understanding of the influence of PHD2 mutations and cancer cell metabolites on the protein folding pathway. We study the unfolding of the PHD2 catalytic domain using differential scanning calorimetry (DSC), fluorescence spectroscopy, and discrete molecular dynamics simulations (DMD). Using computational and experimental techniques, we find that PHD2 undergoes four transitions along the thermal unfolding pathway. To illustrate PHD2 unfolding events in atomic detail, we utilize DMD simulations. Analysis of computational results indicates an intermediate species in the PHD2 unfolding pathway that may enhance aggregation propensity, explaining mutation-independent PHD2 malfunction.
Publication Details
Journal article
Funding
Financial Support
Institute for Advanced studies in Basic Sciences (IASBS)
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University of Tehran, Iran National Science Foundation (INSF)
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Center of Excellence in Biothermodynamics (CEBiotherm)
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Iran National Elites Foundation (INEF)
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UNESCO Chair on Interdisciplinary Research in Diabetes
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References
Scholarly Citations
MeSH Terms
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Chemical Substances
3 chemical substances identified from Medical Subject Headings (MeSH).