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Structure-Function of the High Affinity Substrate Binding Site (S1) of Human Norepinephrine Transporter

The human norepinephrine transporter (hNET) is a member of the neurotransmitter/sodium symporter family, which also includes the neuronal monoamine transporters for serotonin (SERT) and dopamine (DAT). Its involvement in chronic pain and many neurological disorders underlies its pharmaceutical impor...

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Autores principales: Jha, Prerna, Ragnarsson, Lotten, Lewis, Richard J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7066499/
https://www.ncbi.nlm.nih.gov/pubmed/32210813
http://dx.doi.org/10.3389/fphar.2020.00217
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author Jha, Prerna
Ragnarsson, Lotten
Lewis, Richard J.
author_facet Jha, Prerna
Ragnarsson, Lotten
Lewis, Richard J.
author_sort Jha, Prerna
collection PubMed
description The human norepinephrine transporter (hNET) is a member of the neurotransmitter/sodium symporter family, which also includes the neuronal monoamine transporters for serotonin (SERT) and dopamine (DAT). Its involvement in chronic pain and many neurological disorders underlies its pharmaceutical importance. Using the X-ray crystal structures of the human serotonin transporter (hSERT) (PDB 5I6X) and Drosophila melanogaster dopamine transporter (dDAT) (PDB 4M48 and PDB 4XPA) as templates, we developed molecular models for norepinephrine (NE) bound to its high affinity binding site (S1) in the hNET. Our model suggests that the S1 site for NE is deeply buried between transmembrane helices (TMHs) 1, 3, 6, and 8 and overlaps the binding site for leucine in the bacterial leucine transporter (LeuT) and dopamine (DA) in dDAT. Mutational studies identified the functional binding pocket for NE comprised residues A73, A77, N78, V148, N153, I156, G320, F329, N350, S420, G423, and M424, which all influenced NE affinity and/or transport. These effects support a NE-hNET docking model where A73, A77, G320, S420, G423, and M424 form H-bond interactions with NE, V148, I156, and F329 form hydrophobic interactions with NE, whereas N78 affects NE transport and N350 affects NE affinity and transport via an influence on the octahedral co-ordination of the Na(1)(+) ion. Consistent with a conserved structure-function amongst sodium-dependent neurotransmitter transporters, S1 residues A73, A77 (G100 in hSERT), N78, V148 (I150 in hSERT), N153, G320, F329 (Y331 in d DAT), N350, and G423 are conserved in DAT and SERT, indicating they likely play conserved functional roles.
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spelling pubmed-70664992020-03-24 Structure-Function of the High Affinity Substrate Binding Site (S1) of Human Norepinephrine Transporter Jha, Prerna Ragnarsson, Lotten Lewis, Richard J. Front Pharmacol Pharmacology The human norepinephrine transporter (hNET) is a member of the neurotransmitter/sodium symporter family, which also includes the neuronal monoamine transporters for serotonin (SERT) and dopamine (DAT). Its involvement in chronic pain and many neurological disorders underlies its pharmaceutical importance. Using the X-ray crystal structures of the human serotonin transporter (hSERT) (PDB 5I6X) and Drosophila melanogaster dopamine transporter (dDAT) (PDB 4M48 and PDB 4XPA) as templates, we developed molecular models for norepinephrine (NE) bound to its high affinity binding site (S1) in the hNET. Our model suggests that the S1 site for NE is deeply buried between transmembrane helices (TMHs) 1, 3, 6, and 8 and overlaps the binding site for leucine in the bacterial leucine transporter (LeuT) and dopamine (DA) in dDAT. Mutational studies identified the functional binding pocket for NE comprised residues A73, A77, N78, V148, N153, I156, G320, F329, N350, S420, G423, and M424, which all influenced NE affinity and/or transport. These effects support a NE-hNET docking model where A73, A77, G320, S420, G423, and M424 form H-bond interactions with NE, V148, I156, and F329 form hydrophobic interactions with NE, whereas N78 affects NE transport and N350 affects NE affinity and transport via an influence on the octahedral co-ordination of the Na(1)(+) ion. Consistent with a conserved structure-function amongst sodium-dependent neurotransmitter transporters, S1 residues A73, A77 (G100 in hSERT), N78, V148 (I150 in hSERT), N153, G320, F329 (Y331 in d DAT), N350, and G423 are conserved in DAT and SERT, indicating they likely play conserved functional roles. Frontiers Media S.A. 2020-03-05 /pmc/articles/PMC7066499/ /pubmed/32210813 http://dx.doi.org/10.3389/fphar.2020.00217 Text en Copyright © 2020 Jha, Ragnarsson and Lewis. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Jha, Prerna
Ragnarsson, Lotten
Lewis, Richard J.
Structure-Function of the High Affinity Substrate Binding Site (S1) of Human Norepinephrine Transporter
title Structure-Function of the High Affinity Substrate Binding Site (S1) of Human Norepinephrine Transporter
title_full Structure-Function of the High Affinity Substrate Binding Site (S1) of Human Norepinephrine Transporter
title_fullStr Structure-Function of the High Affinity Substrate Binding Site (S1) of Human Norepinephrine Transporter
title_full_unstemmed Structure-Function of the High Affinity Substrate Binding Site (S1) of Human Norepinephrine Transporter
title_short Structure-Function of the High Affinity Substrate Binding Site (S1) of Human Norepinephrine Transporter
title_sort structure-function of the high affinity substrate binding site (s1) of human norepinephrine transporter
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7066499/
https://www.ncbi.nlm.nih.gov/pubmed/32210813
http://dx.doi.org/10.3389/fphar.2020.00217
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