A missense variation in human Casein kinase I Epsilon gene that induces functional alteration and shows an inverse association with circadian rhythm sleep disorders

Recent studies have shown that functional variations in clock genes, which generate circadian rhythms through interactive positive/negative feedback loops, contribute to the development of circadian rhythm sleep disorders in humans. Another potential candidate for rhythm disorder susceptibility is c...

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Veröffentlicht in:Neuropsychopharmacology (New York, N.Y.) N.Y.), 2004-10, Vol.29 (10), p.1901-1909
Hauptverfasser: TAKANO, Atsuko, UCHIYAMA, Makoto, HASHIMOTODANI, Yuki, NAKAJIMA, Toru, OZEKI, Yuji, HORI, Toru, YAMADA, Naoto, TOYOSHIMA, Ryoichi, OZAKI, Norio, OKAWA, Masako, NAGAI, Katsuya, TAKAHASHI, Kiyohisa, KAJIMURA, Naofumi, ISOJIMA, Yasushi, YAMAUCHI, Toshio, EBISAWA, Takashi, MISHIMA, Kazuo, INOUE, Yuichi, KAMEI, Yuichi, KITAJIMA, Tsuyoshi, SHIBUI, Kayo, KATOH, Masaaki, WATANABE, Tsuyoshi
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container_issue 10
container_start_page 1901
container_title Neuropsychopharmacology (New York, N.Y.)
container_volume 29
creator TAKANO, Atsuko
UCHIYAMA, Makoto
HASHIMOTODANI, Yuki
NAKAJIMA, Toru
OZEKI, Yuji
HORI, Toru
YAMADA, Naoto
TOYOSHIMA, Ryoichi
OZAKI, Norio
OKAWA, Masako
NAGAI, Katsuya
TAKAHASHI, Kiyohisa
KAJIMURA, Naofumi
ISOJIMA, Yasushi
YAMAUCHI, Toshio
EBISAWA, Takashi
MISHIMA, Kazuo
INOUE, Yuichi
KAMEI, Yuichi
KITAJIMA, Tsuyoshi
SHIBUI, Kayo
KATOH, Masaaki
WATANABE, Tsuyoshi
description Recent studies have shown that functional variations in clock genes, which generate circadian rhythms through interactive positive/negative feedback loops, contribute to the development of circadian rhythm sleep disorders in humans. Another potential candidate for rhythm disorder susceptibility is casein kinase I epsilon (CKIepsilon), which phosphorylates clock proteins and plays a pivotal role in the circadian clock. To determine whether variations in CKIepsilon induce vulnerability to human circadian rhythm sleep disorders, such as delayed sleep phase syndrome (DSPS) and non-24-h sleep-wake syndrome (N-24), we analyzed all of the coding exons of the human CKIepsilon gene. One of the variants identified encoded an amino-acid substitution S408N, eliminating one of the putative autophosphorylation sites in the carboxyl-terminal extension of CKIepsilon. The N408 allele was less common in both DSPS (p = 0.028) and N-24 patients (p = 0.035) compared to controls. When DSPS and N-24 subjects were combined, based on an a priori prediction of a common mechanism underlying both DSPS and N-24, the inverse association between the N408 allele and rhythm disorders was highly significant (p = 0.0067, odds ratio = 0.42, 95% confidence interval: 0.22-0.79). In vitro kinase assay revealed that CKIepsilon with the S408N variation was approximately 1.8-fold more active than wild-type CKIepsilon. These results indicate that the N408 allele in CKIepsilon plays a protective role in the development of DSPS and N-24 through alteration of the enzyme activity.
doi_str_mv 10.1038/sj.npp.1300503
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Another potential candidate for rhythm disorder susceptibility is casein kinase I epsilon (CKIepsilon), which phosphorylates clock proteins and plays a pivotal role in the circadian clock. To determine whether variations in CKIepsilon induce vulnerability to human circadian rhythm sleep disorders, such as delayed sleep phase syndrome (DSPS) and non-24-h sleep-wake syndrome (N-24), we analyzed all of the coding exons of the human CKIepsilon gene. One of the variants identified encoded an amino-acid substitution S408N, eliminating one of the putative autophosphorylation sites in the carboxyl-terminal extension of CKIepsilon. The N408 allele was less common in both DSPS (p = 0.028) and N-24 patients (p = 0.035) compared to controls. 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When DSPS and N-24 subjects were combined, based on an a priori prediction of a common mechanism underlying both DSPS and N-24, the inverse association between the N408 allele and rhythm disorders was highly significant (p = 0.0067, odds ratio = 0.42, 95% confidence interval: 0.22-0.79). In vitro kinase assay revealed that CKIepsilon with the S408N variation was approximately 1.8-fold more active than wild-type CKIepsilon. These results indicate that the N408 allele in CKIepsilon plays a protective role in the development of DSPS and N-24 through alteration of the enzyme activity.</abstract><cop>New York, NY</cop><pub>Nature Publishing</pub><pmid>15187983</pmid><doi>10.1038/sj.npp.1300503</doi><tpages>9</tpages><oa>free_for_read</oa></addata></record>
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source MEDLINE; EZB-FREE-00999 freely available EZB journals; SpringerLink Journals - AutoHoldings
subjects Adult
Alleles
Biological and medical sciences
Casein Kinase Iepsilon - genetics
Circadian rhythm
Circadian Rhythm - genetics
DNA, Complementary - analysis
DNA, Complementary - genetics
Exons - genetics
Feedback
Female
Genes
Genotype
Humans
Introns - genetics
Kinases
Kinetics
Male
Medical sciences
Medicine
Mutation, Missense - genetics
Neuropharmacology
Pacemakers
Pharmacology. Drug treatments
Phosphorylation
Polymorphism, Single-Stranded Conformational
Psychiatry
Reverse Transcriptase Polymerase Chain Reaction
Risk Factors
Sleep disorders
Sleep Wake Disorders - genetics
title A missense variation in human Casein kinase I Epsilon gene that induces functional alteration and shows an inverse association with circadian rhythm sleep disorders
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