A single glycine-alanine exchange directs ligand specificity of the elephant progestin receptor.

The primary gestagen of elephants is 5α-dihydroprogesterone (DHP), which is unlike all other mammals studied until now. The level of DHP in elephants equals that of progesterone in other mammals, and elephants are able to bind DHP with similar affinity to progesterone indicating a unique ligand-bind...

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Main Authors: Michael Wierer, Anna K Schrey, Ronald Kühne, Susanne E Ulbrich, Heinrich H D Meyer
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3507690?pdf=render
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spelling doaj-4904019e1c8b43108b08311d0e7f58c32020-11-25T00:12:13ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01711e5035010.1371/journal.pone.0050350A single glycine-alanine exchange directs ligand specificity of the elephant progestin receptor.Michael WiererAnna K SchreyRonald KühneSusanne E UlbrichHeinrich H D MeyerThe primary gestagen of elephants is 5α-dihydroprogesterone (DHP), which is unlike all other mammals studied until now. The level of DHP in elephants equals that of progesterone in other mammals, and elephants are able to bind DHP with similar affinity to progesterone indicating a unique ligand-binding specificity of the elephant progestin receptor (PR). Using site-directed mutagenesis in combination with in vitro binding studies we here report that this change in specificity is due to a single glycine to alanine exchange at position 722 (G722A) of PR, which specifically increases DHP affinity while not affecting binding of progesterone. By conducting molecular dynamics simulations comparing human and elephant PR ligand-binding domains (LBD), we observed that the alanine methyl group at position 722 is able to push the DHP A-ring into a position similar to progesterone. In the human PR, the DHP A-ring position is twisted towards helix 3 of PR thereby disturbing the hydrogen bond pattern around the C3-keto group, resulting in a lower binding affinity. Furthermore, we observed that the elephant PR ligand-binding pocket is more rigid than the human analogue, which probably explains the higher affinity towards both progesterone and DHP. Interestingly, the G722A substitution is not elephant-specific, rather it is also present in five independent lineages of mammalian evolution, suggesting a special role of the substitution for the development of distinct mammalian gestagen systems.http://europepmc.org/articles/PMC3507690?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Michael Wierer
Anna K Schrey
Ronald Kühne
Susanne E Ulbrich
Heinrich H D Meyer
spellingShingle Michael Wierer
Anna K Schrey
Ronald Kühne
Susanne E Ulbrich
Heinrich H D Meyer
A single glycine-alanine exchange directs ligand specificity of the elephant progestin receptor.
PLoS ONE
author_facet Michael Wierer
Anna K Schrey
Ronald Kühne
Susanne E Ulbrich
Heinrich H D Meyer
author_sort Michael Wierer
title A single glycine-alanine exchange directs ligand specificity of the elephant progestin receptor.
title_short A single glycine-alanine exchange directs ligand specificity of the elephant progestin receptor.
title_full A single glycine-alanine exchange directs ligand specificity of the elephant progestin receptor.
title_fullStr A single glycine-alanine exchange directs ligand specificity of the elephant progestin receptor.
title_full_unstemmed A single glycine-alanine exchange directs ligand specificity of the elephant progestin receptor.
title_sort single glycine-alanine exchange directs ligand specificity of the elephant progestin receptor.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description The primary gestagen of elephants is 5α-dihydroprogesterone (DHP), which is unlike all other mammals studied until now. The level of DHP in elephants equals that of progesterone in other mammals, and elephants are able to bind DHP with similar affinity to progesterone indicating a unique ligand-binding specificity of the elephant progestin receptor (PR). Using site-directed mutagenesis in combination with in vitro binding studies we here report that this change in specificity is due to a single glycine to alanine exchange at position 722 (G722A) of PR, which specifically increases DHP affinity while not affecting binding of progesterone. By conducting molecular dynamics simulations comparing human and elephant PR ligand-binding domains (LBD), we observed that the alanine methyl group at position 722 is able to push the DHP A-ring into a position similar to progesterone. In the human PR, the DHP A-ring position is twisted towards helix 3 of PR thereby disturbing the hydrogen bond pattern around the C3-keto group, resulting in a lower binding affinity. Furthermore, we observed that the elephant PR ligand-binding pocket is more rigid than the human analogue, which probably explains the higher affinity towards both progesterone and DHP. Interestingly, the G722A substitution is not elephant-specific, rather it is also present in five independent lineages of mammalian evolution, suggesting a special role of the substitution for the development of distinct mammalian gestagen systems.
url http://europepmc.org/articles/PMC3507690?pdf=render
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