Mouse acetylcholinesterase enhances neurite outgrowth of rat R28 cells through interaction with laminin-1.

The enzyme acetylcholinesterase (AChE) terminates synaptic transmission at cholinergic synapses by hydrolyzing the neurotransmitter acetylcholine, but can also exert 'non-classical', morpho-regulatory effects on developing neurons such as stimulation of neurite outgrowth. Here, we investig...

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Main Authors: Laura E Sperling, Janine Klaczinski, Corina Schütz, Lydia Rudolph, Paul G Layer
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3343015?pdf=render
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spelling doaj-df78e636e1b448ebbf399b2d2023cbd72020-11-25T01:47:19ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0175e3668310.1371/journal.pone.0036683Mouse acetylcholinesterase enhances neurite outgrowth of rat R28 cells through interaction with laminin-1.Laura E SperlingJanine KlaczinskiCorina SchützLydia RudolphPaul G LayerThe enzyme acetylcholinesterase (AChE) terminates synaptic transmission at cholinergic synapses by hydrolyzing the neurotransmitter acetylcholine, but can also exert 'non-classical', morpho-regulatory effects on developing neurons such as stimulation of neurite outgrowth. Here, we investigated the role of AChE binding to laminin-1 on the regulation of neurite outgrowth by using cell culture, immunocytochemistry, and molecular biological approaches. To explore the role of AChE, we examined fiber growth of cells overexpressing different forms of AChE, and/or during their growth on laminin-1. A significant increase of neuritic growth as compared with controls was observed for neurons over-expressing AChE. Accordingly, addition of globular AChE to the medium increased total length of neurites. Co-transfection with PRIMA, a membrane anchor of AChE, led to an increase in fiber length similar to AChE overexpressing cells. Transfection with an AChE mutant that leads to the retention of AChE within cells had no stimulatory effect on neurite length. Noticeably, the longest neurites were produced by neurons overexpressing AChE and growing on laminin-1, suggesting that the AChE/laminin interaction is involved in regulating neurite outgrowth. Our findings demonstrate that binding of AChE to laminin-1 alters AChE activity and leads to increased neurite growth in culture. A possible mechanism of the AChE effect on neurite outgrowth is proposed due to the interaction of AChE with laminin-1.http://europepmc.org/articles/PMC3343015?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Laura E Sperling
Janine Klaczinski
Corina Schütz
Lydia Rudolph
Paul G Layer
spellingShingle Laura E Sperling
Janine Klaczinski
Corina Schütz
Lydia Rudolph
Paul G Layer
Mouse acetylcholinesterase enhances neurite outgrowth of rat R28 cells through interaction with laminin-1.
PLoS ONE
author_facet Laura E Sperling
Janine Klaczinski
Corina Schütz
Lydia Rudolph
Paul G Layer
author_sort Laura E Sperling
title Mouse acetylcholinesterase enhances neurite outgrowth of rat R28 cells through interaction with laminin-1.
title_short Mouse acetylcholinesterase enhances neurite outgrowth of rat R28 cells through interaction with laminin-1.
title_full Mouse acetylcholinesterase enhances neurite outgrowth of rat R28 cells through interaction with laminin-1.
title_fullStr Mouse acetylcholinesterase enhances neurite outgrowth of rat R28 cells through interaction with laminin-1.
title_full_unstemmed Mouse acetylcholinesterase enhances neurite outgrowth of rat R28 cells through interaction with laminin-1.
title_sort mouse acetylcholinesterase enhances neurite outgrowth of rat r28 cells through interaction with laminin-1.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description The enzyme acetylcholinesterase (AChE) terminates synaptic transmission at cholinergic synapses by hydrolyzing the neurotransmitter acetylcholine, but can also exert 'non-classical', morpho-regulatory effects on developing neurons such as stimulation of neurite outgrowth. Here, we investigated the role of AChE binding to laminin-1 on the regulation of neurite outgrowth by using cell culture, immunocytochemistry, and molecular biological approaches. To explore the role of AChE, we examined fiber growth of cells overexpressing different forms of AChE, and/or during their growth on laminin-1. A significant increase of neuritic growth as compared with controls was observed for neurons over-expressing AChE. Accordingly, addition of globular AChE to the medium increased total length of neurites. Co-transfection with PRIMA, a membrane anchor of AChE, led to an increase in fiber length similar to AChE overexpressing cells. Transfection with an AChE mutant that leads to the retention of AChE within cells had no stimulatory effect on neurite length. Noticeably, the longest neurites were produced by neurons overexpressing AChE and growing on laminin-1, suggesting that the AChE/laminin interaction is involved in regulating neurite outgrowth. Our findings demonstrate that binding of AChE to laminin-1 alters AChE activity and leads to increased neurite growth in culture. A possible mechanism of the AChE effect on neurite outgrowth is proposed due to the interaction of AChE with laminin-1.
url http://europepmc.org/articles/PMC3343015?pdf=render
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