Laura Plavc, Cene Skubic, Leja Dolenc Grošelj, Damjana Rozman
{"title":"昼夜节律时钟基因 PER2 和 PER3 的变异与家族性睡眠时相紊乱有关。","authors":"Laura Plavc, Cene Skubic, Leja Dolenc Grošelj, Damjana Rozman","doi":"10.1080/07420528.2024.2348016","DOIUrl":null,"url":null,"abstract":"<p><p>Delayed sleep phase disorder and advanced sleep phase disorder cause disruption of the circadian clock and present with extreme morning/evening chronotype with unclear role of the genetic etiology, especially for delayed sleep phase disorder. To assess if genotyping can aid in clinical diagnosis, we examined the presence of genetic variants in circadian clock genes previously linked to both sleep disorders in Slovenian patient cohort. Based on Morning-evening questionnaire, we found 15 patients with extreme chronotypes, 13 evening and 2 morning, and 28 controls. Sanger sequencing was used to determine the presence of carefully selected candidate SNPs in regions of the <i>CSNK1D</i>, <i>PER2/3</i> and <i>CRY1</i> genes. In a patient with an extreme morning chronotype and a family history of circadian sleep disorder we identified two heterozygous missense variants in <i>PER3</i> gene, c.1243C>G (NM_001377275.1 (p.Pro415Ala)) and c.1250A>G (NM_001377275.1 (p.His417Arg)). The variants were significantly linked to Advanced sleep phase disorder and were also found in proband's father with extreme morningness. Additionally, a rare SNP was found in <i>PER2</i> gene in a patient with <i>clinical picture of</i> Delayed sleep phase disorder. The novel variant in <i>PER2</i> (NM_022817.3):c.1901-218 G>T <i>was found in proband's parent with eveningness, indicating an autosomal dominant inheritance</i>. We identified a family with autosomal dominant inheritance of two <i>PER3</i> heterozygous variants that can be linked to Advanced sleep phase disorder. We revealed also a rare hereditary form of Delayed sleep phase disorder with a new <i>PER2</i> variant with autosomal dominant inheritance, shedding the light into the genetic causality.</p>","PeriodicalId":10294,"journal":{"name":"Chronobiology International","volume":" ","pages":"757-766"},"PeriodicalIF":2.2000,"publicationDate":"2024-05-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Variants in the circadian clock genes <i>PER2</i> and <i>PER3</i> associate with familial sleep phase disorders.\",\"authors\":\"Laura Plavc, Cene Skubic, Leja Dolenc Grošelj, Damjana Rozman\",\"doi\":\"10.1080/07420528.2024.2348016\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Delayed sleep phase disorder and advanced sleep phase disorder cause disruption of the circadian clock and present with extreme morning/evening chronotype with unclear role of the genetic etiology, especially for delayed sleep phase disorder. To assess if genotyping can aid in clinical diagnosis, we examined the presence of genetic variants in circadian clock genes previously linked to both sleep disorders in Slovenian patient cohort. Based on Morning-evening questionnaire, we found 15 patients with extreme chronotypes, 13 evening and 2 morning, and 28 controls. Sanger sequencing was used to determine the presence of carefully selected candidate SNPs in regions of the <i>CSNK1D</i>, <i>PER2/3</i> and <i>CRY1</i> genes. In a patient with an extreme morning chronotype and a family history of circadian sleep disorder we identified two heterozygous missense variants in <i>PER3</i> gene, c.1243C>G (NM_001377275.1 (p.Pro415Ala)) and c.1250A>G (NM_001377275.1 (p.His417Arg)). The variants were significantly linked to Advanced sleep phase disorder and were also found in proband's father with extreme morningness. Additionally, a rare SNP was found in <i>PER2</i> gene in a patient with <i>clinical picture of</i> Delayed sleep phase disorder. The novel variant in <i>PER2</i> (NM_022817.3):c.1901-218 G>T <i>was found in proband's parent with eveningness, indicating an autosomal dominant inheritance</i>. We identified a family with autosomal dominant inheritance of two <i>PER3</i> heterozygous variants that can be linked to Advanced sleep phase disorder. 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Variants in the circadian clock genes PER2 and PER3 associate with familial sleep phase disorders.
Delayed sleep phase disorder and advanced sleep phase disorder cause disruption of the circadian clock and present with extreme morning/evening chronotype with unclear role of the genetic etiology, especially for delayed sleep phase disorder. To assess if genotyping can aid in clinical diagnosis, we examined the presence of genetic variants in circadian clock genes previously linked to both sleep disorders in Slovenian patient cohort. Based on Morning-evening questionnaire, we found 15 patients with extreme chronotypes, 13 evening and 2 morning, and 28 controls. Sanger sequencing was used to determine the presence of carefully selected candidate SNPs in regions of the CSNK1D, PER2/3 and CRY1 genes. In a patient with an extreme morning chronotype and a family history of circadian sleep disorder we identified two heterozygous missense variants in PER3 gene, c.1243C>G (NM_001377275.1 (p.Pro415Ala)) and c.1250A>G (NM_001377275.1 (p.His417Arg)). The variants were significantly linked to Advanced sleep phase disorder and were also found in proband's father with extreme morningness. Additionally, a rare SNP was found in PER2 gene in a patient with clinical picture of Delayed sleep phase disorder. The novel variant in PER2 (NM_022817.3):c.1901-218 G>T was found in proband's parent with eveningness, indicating an autosomal dominant inheritance. We identified a family with autosomal dominant inheritance of two PER3 heterozygous variants that can be linked to Advanced sleep phase disorder. We revealed also a rare hereditary form of Delayed sleep phase disorder with a new PER2 variant with autosomal dominant inheritance, shedding the light into the genetic causality.
期刊介绍:
Chronobiology International is the journal of biological and medical rhythm research. It is a transdisciplinary journal focusing on biological rhythm phenomena of all life forms. The journal publishes groundbreaking articles plus authoritative review papers, short communications of work in progress, case studies, and letters to the editor, for example, on genetic and molecular mechanisms of insect, animal and human biological timekeeping, including melatonin and pineal gland rhythms. It also publishes applied topics, for example, shiftwork, chronotypes, and associated personality traits; chronobiology and chronotherapy of sleep, cardiovascular, pulmonary, psychiatric, and other medical conditions. Articles in the journal pertain to basic and applied chronobiology, and to methods, statistics, and instrumentation for biological rhythm study.
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