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5MT3

Human insulin in complex with serotonin and arginine

Summary for 5MT3
Entry DOI10.2210/pdb5mt3/pdb
DescriptorInsulin, ZINC ION, CHLORIDE ION, ... (7 entities in total)
Functional Keywordshormone, serotonin, arginine, complex, specificity
Biological sourceHomo sapiens (Human)
More
Cellular locationSecreted: P01308 P01308
Total number of polymer chains32
Total formula weight96633.82
Authors
Brzozowski, A.M.,Turkenburg, J.P.,Jiracek, J.,Zakova, L. (deposition date: 2017-01-06, release date: 2017-04-05, Last modification date: 2024-11-20)
Primary citationPalivec, V.,Viola, C.M.,Kozak, M.,Ganderton, T.R.,Krizkova, K.,Turkenburg, J.P.,Haluskova, P.,Zakova, L.,Jiracek, J.,Jungwirth, P.,Brzozowski, A.M.
Computational and structural evidence for neurotransmitter-mediated modulation of the oligomeric states of human insulin in storage granules.
J. Biol. Chem., 292:8342-8355, 2017
Cited by
PubMed Abstract: Human insulin is a pivotal protein hormone controlling metabolism, growth, and aging and whose malfunctioning underlies diabetes, some cancers, and neurodegeneration. Despite its central position in human physiology, the oligomeric state and conformation of insulin in its storage granules in the pancreas are not known. In contrast, many structures of hexamers of this hormone are available and fall into three conformational states: T, TR, and R As there is strong evidence for accumulation of neurotransmitters, such as serotonin and dopamine, in insulin storage granules in pancreatic β-cells, we probed by molecular dynamics (MD) and protein crystallography (PC) if these endogenous ligands affect and stabilize insulin oligomers. Parallel studies independently converged on the observation that serotonin binds well within the insulin hexamer (site I), stabilizing it in the TR conformation. Both methods indicated serotonin binding on the hexamer surface (site III) as well. MD, but not PC, indicated that dopamine was also a good site III ligand. Some of the PC studies also included arginine, which may be abundant in insulin granules upon processing of pro-insulin, and stable TR hexamers loaded with both serotonin and arginine were obtained. The MD and PC results were supported further by in solution spectroscopic studies with R-state-specific chromophore. Our results indicate that the TR oligomer is a plausible insulin pancreatic storage form, resulting from its complex interplay with neurotransmitters, and pro-insulin processing products. These findings may have implications for clinical insulin formulations.
PubMed: 28348075
DOI: 10.1074/jbc.M117.775924
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.02 Å)
Structure validation

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