Age-dependent impairment of eyeblink conditioning in prion protein-deficient mice.

Mice lacking the prion protein (PrP(C)) gene (Prnp), Ngsk Prnp (0/0) mice, show late-onset cerebellar Purkinje cell (PC) degeneration because of ectopic overexpression of PrP(C)-like protein (PrPLP/Dpl). Because PrP(C) is highly expressed in cerebellar neurons (including PCs and granule cells), it m...

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Main Authors: Yasushi Kishimoto, Moritoshi Hirono, Ryuichiro Atarashi, Suehiro Sakaguchi, Tohru Yoshioka, Shigeru Katamine, Yutaka Kirino
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3622692?pdf=render
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author Yasushi Kishimoto
Moritoshi Hirono
Ryuichiro Atarashi
Suehiro Sakaguchi
Tohru Yoshioka
Shigeru Katamine
Yutaka Kirino
author_facet Yasushi Kishimoto
Moritoshi Hirono
Ryuichiro Atarashi
Suehiro Sakaguchi
Tohru Yoshioka
Shigeru Katamine
Yutaka Kirino
author_sort Yasushi Kishimoto
collection DOAJ
description Mice lacking the prion protein (PrP(C)) gene (Prnp), Ngsk Prnp (0/0) mice, show late-onset cerebellar Purkinje cell (PC) degeneration because of ectopic overexpression of PrP(C)-like protein (PrPLP/Dpl). Because PrP(C) is highly expressed in cerebellar neurons (including PCs and granule cells), it may be involved in cerebellar synaptic function and cerebellar cognitive function. However, no studies have been conducted to investigate the possible involvement of PrP(C) and/or PrPLP/Dpl in cerebellum-dependent discrete motor learning. Therefore, the present cross-sectional study was designed to examine cerebellum-dependent delay eyeblink conditioning in Ngsk Prnp (0/0) mice in adulthood (16, 40, and 60 weeks of age). The aims of the present study were two-fold: (1) to examine the role of PrP(C) and/or PrPLP/Dpl in cerebellum-dependent motor learning and (2) to confirm the age-related deterioration of eyeblink conditioning in Ngsk Prnp (0/0) mice as an animal model of progressive cerebellar degeneration. Ngsk Prnp (0/0) mice aged 16 weeks exhibited intact acquisition of conditioned eyeblink responses (CRs), although the CR timing was altered. The same result was observed in another line of PrP(c)-deficient mice, ZrchI PrnP (0/0) mice. However, at 40 weeks of age, CR incidence impairment was observed in Ngsk Prnp (0/0) mice. Furthermore, Ngsk Prnp (0/0) mice aged 60 weeks showed more significantly impaired CR acquisition than Ngsk Prnp (0/0) mice aged 40 weeks, indicating the temporal correlation between cerebellar PC degeneration and motor learning deficits. Our findings indicate the importance of the cerebellar cortex in delay eyeblink conditioning and suggest an important physiological role of prion protein in cerebellar motor learning.
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spelling doaj.art-d8ed7a743f734cf29c4f29ac5731bc562022-12-22T00:44:39ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0184e6062710.1371/journal.pone.0060627Age-dependent impairment of eyeblink conditioning in prion protein-deficient mice.Yasushi KishimotoMoritoshi HironoRyuichiro AtarashiSuehiro SakaguchiTohru YoshiokaShigeru KatamineYutaka KirinoMice lacking the prion protein (PrP(C)) gene (Prnp), Ngsk Prnp (0/0) mice, show late-onset cerebellar Purkinje cell (PC) degeneration because of ectopic overexpression of PrP(C)-like protein (PrPLP/Dpl). Because PrP(C) is highly expressed in cerebellar neurons (including PCs and granule cells), it may be involved in cerebellar synaptic function and cerebellar cognitive function. However, no studies have been conducted to investigate the possible involvement of PrP(C) and/or PrPLP/Dpl in cerebellum-dependent discrete motor learning. Therefore, the present cross-sectional study was designed to examine cerebellum-dependent delay eyeblink conditioning in Ngsk Prnp (0/0) mice in adulthood (16, 40, and 60 weeks of age). The aims of the present study were two-fold: (1) to examine the role of PrP(C) and/or PrPLP/Dpl in cerebellum-dependent motor learning and (2) to confirm the age-related deterioration of eyeblink conditioning in Ngsk Prnp (0/0) mice as an animal model of progressive cerebellar degeneration. Ngsk Prnp (0/0) mice aged 16 weeks exhibited intact acquisition of conditioned eyeblink responses (CRs), although the CR timing was altered. The same result was observed in another line of PrP(c)-deficient mice, ZrchI PrnP (0/0) mice. However, at 40 weeks of age, CR incidence impairment was observed in Ngsk Prnp (0/0) mice. Furthermore, Ngsk Prnp (0/0) mice aged 60 weeks showed more significantly impaired CR acquisition than Ngsk Prnp (0/0) mice aged 40 weeks, indicating the temporal correlation between cerebellar PC degeneration and motor learning deficits. Our findings indicate the importance of the cerebellar cortex in delay eyeblink conditioning and suggest an important physiological role of prion protein in cerebellar motor learning.http://europepmc.org/articles/PMC3622692?pdf=render
spellingShingle Yasushi Kishimoto
Moritoshi Hirono
Ryuichiro Atarashi
Suehiro Sakaguchi
Tohru Yoshioka
Shigeru Katamine
Yutaka Kirino
Age-dependent impairment of eyeblink conditioning in prion protein-deficient mice.
PLoS ONE
title Age-dependent impairment of eyeblink conditioning in prion protein-deficient mice.
title_full Age-dependent impairment of eyeblink conditioning in prion protein-deficient mice.
title_fullStr Age-dependent impairment of eyeblink conditioning in prion protein-deficient mice.
title_full_unstemmed Age-dependent impairment of eyeblink conditioning in prion protein-deficient mice.
title_short Age-dependent impairment of eyeblink conditioning in prion protein-deficient mice.
title_sort age dependent impairment of eyeblink conditioning in prion protein deficient mice
url http://europepmc.org/articles/PMC3622692?pdf=render
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