The structure, stability and pheromone binding of the male mouse protein sex pheromone darcin.

Mouse urine contains highly polymorphic major urinary proteins that have multiple functions in scent communication through their abilities to bind, transport and release hydrophobic volatile pheromones. The mouse genome encodes for about 20 of these proteins and are classified, based on amino acid s...

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Main Authors: Marie M Phelan, Lynn McLean, Stuart D Armstrong, Jane L Hurst, Robert J Beynon, Lu-Yun Lian
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4184797?pdf=render
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spelling doaj-7768cb019341432b9db33a0ffce4d7472020-11-25T01:19:51ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01910e10841510.1371/journal.pone.0108415The structure, stability and pheromone binding of the male mouse protein sex pheromone darcin.Marie M PhelanLynn McLeanStuart D ArmstrongJane L HurstRobert J BeynonLu-Yun LianMouse urine contains highly polymorphic major urinary proteins that have multiple functions in scent communication through their abilities to bind, transport and release hydrophobic volatile pheromones. The mouse genome encodes for about 20 of these proteins and are classified, based on amino acid sequence similarity and tissue expression patterns, as either central or peripheral major urinary proteins. Darcin is a male specific peripheral major urinary protein and is distinctive in its role in inherent female attraction. A comparison of the structure and biophysical properties of darcin with MUP11, which belongs to the central class, highlights similarity in the overall structure between the two proteins. The thermodynamic stability, however, differs between the two proteins, with darcin being much more stable. Furthermore, the affinity of a small pheromone mimetic is higher for darcin, although darcin is more discriminatory, being unable to bind bulkier ligands. These attributes are due to the hydrophobic ligand binding cavity of darcin being smaller, caused by the presence of larger amino acid side chains. Thus, the physical and chemical characteristics of the binding cavity, together with its extreme stability, are consistent with darcin being able to exert its function after release into the environment.http://europepmc.org/articles/PMC4184797?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Marie M Phelan
Lynn McLean
Stuart D Armstrong
Jane L Hurst
Robert J Beynon
Lu-Yun Lian
spellingShingle Marie M Phelan
Lynn McLean
Stuart D Armstrong
Jane L Hurst
Robert J Beynon
Lu-Yun Lian
The structure, stability and pheromone binding of the male mouse protein sex pheromone darcin.
PLoS ONE
author_facet Marie M Phelan
Lynn McLean
Stuart D Armstrong
Jane L Hurst
Robert J Beynon
Lu-Yun Lian
author_sort Marie M Phelan
title The structure, stability and pheromone binding of the male mouse protein sex pheromone darcin.
title_short The structure, stability and pheromone binding of the male mouse protein sex pheromone darcin.
title_full The structure, stability and pheromone binding of the male mouse protein sex pheromone darcin.
title_fullStr The structure, stability and pheromone binding of the male mouse protein sex pheromone darcin.
title_full_unstemmed The structure, stability and pheromone binding of the male mouse protein sex pheromone darcin.
title_sort structure, stability and pheromone binding of the male mouse protein sex pheromone darcin.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Mouse urine contains highly polymorphic major urinary proteins that have multiple functions in scent communication through their abilities to bind, transport and release hydrophobic volatile pheromones. The mouse genome encodes for about 20 of these proteins and are classified, based on amino acid sequence similarity and tissue expression patterns, as either central or peripheral major urinary proteins. Darcin is a male specific peripheral major urinary protein and is distinctive in its role in inherent female attraction. A comparison of the structure and biophysical properties of darcin with MUP11, which belongs to the central class, highlights similarity in the overall structure between the two proteins. The thermodynamic stability, however, differs between the two proteins, with darcin being much more stable. Furthermore, the affinity of a small pheromone mimetic is higher for darcin, although darcin is more discriminatory, being unable to bind bulkier ligands. These attributes are due to the hydrophobic ligand binding cavity of darcin being smaller, caused by the presence of larger amino acid side chains. Thus, the physical and chemical characteristics of the binding cavity, together with its extreme stability, are consistent with darcin being able to exert its function after release into the environment.
url http://europepmc.org/articles/PMC4184797?pdf=render
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