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9LVC

Temperature induces a shift from the dihexamer to the hexamer form of insulin

Summary for 9LVC
Entry DOI10.2210/pdb9lvc/pdb
DescriptorInsulin A chain, Insulin B chain, PHENOL, ... (7 entities in total)
Functional Keywordsinsulin structure, hexamer form, temperature jump, hormone
Biological sourceHomo sapiens (human)
More
Total number of polymer chains8
Total formula weight24559.56
Authors
Ayan, E.,Kepceoglu, A. (deposition date: 2025-02-12, release date: 2025-02-26, Last modification date: 2025-09-10)
Primary citationAyan, E.
Temperature induces a shift from insulin dihexamer to hexamer in collective dynamics.
Protein Sci., 34:e70245-e70245, 2025
Cited by
PubMed Abstract: Structures based on x-ray diffraction data collected at 2.3, 2.88, and 2.95 Å resolutions have been determined for long-acting dihexamer insulin at three different temperatures, ranging from 100 to 300 K. It has been observed that the unit-cell parameters of the insulin crystal at 100 K change at 200 K. This change is likely due to the subtle repacking of the rhombohedral insulin crystal and the loss of noncovalent interactions involving myristic acid, which binds two hexamers. Computational analyses indicate that allosteric residues and fatty acid-binding residues of insulin hexamers exhibit reduced collective dynamics and inter-residue coupling, possibly resulting from increased structural fluctuations due to elevated thermal vibrations. This transition has been observed at a characteristic temperature of 200 K, potentially highlighting underlying alterations in the dynamic structure of the fatty acid-solvent interface in the dimer of hexamers. Combined with computational analyses, these findings provide key insights into thermal stability mechanisms, which are crucial for developing thermostable insulin formulations in industrial applications.
PubMed: 40815299
DOI: 10.1002/pro.70245
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.3 Å)
Structure validation

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건을2025-11-05부터공개중

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