Exploring Structures and Dynamics of Protamine Molecules through Molecular Dynamics Simulations

Protamines are arginine-rich proteins that condense DNA in sperm. Despite their importance in reproduction, information on protamine structure is scarce. We, therefore, used molecular dynamics to examine the structures of salmon, bull P1, and human P1 protamines. The sizes and shapes of each protami...

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Bibliographic Details
Published in:ACS omega Vol. 7; no. 46; pp. 42083 - 42095
Main Authors: Shadman, Hossain, Gallops, Caleb Edward, Ziebarth, Jesse D., DeRouchey, Jason E., Wang, Yongmei
Format: Journal Article
Language:English
Published: American Chemical Society 22-11-2022
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Summary:Protamines are arginine-rich proteins that condense DNA in sperm. Despite their importance in reproduction, information on protamine structure is scarce. We, therefore, used molecular dynamics to examine the structures of salmon, bull P1, and human P1 protamines. The sizes and shapes of each protamine varied widely, indicating that they were disordered with structures covering a broad conformational landscape, from hairpin loop structures to extended coils. Despite their general disorder, the protamines did form secondary structures, including helices and hairpin loops. In eutherians, hairpins may promote disulfide bonding that facilitates protamine-DNA condensation, but the specifics of this bonding is not well established. We examined inter-residue distances in the simulations to predict residue pairs likely to form intramolecular bonds, leading to the identification of bonding pairs consistent with previous results in bull and human. These results support a model for eutherian protamine structures where a highly charged center is surrounded by disulfide-bond-stabilized loops.
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ISSN:2470-1343
2470-1343
DOI:10.1021/acsomega.2c04227