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Copy number variation profile-based genomic typing of premenstrual dysphoric disorder in Chinese 被引量:1

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摘要 Premenstrual dysphoric disorder(PMDD) affects nearly 5% of women of reproductive age. Symptomatic heterogeneity, together with largely unknown genetics, has greatly hindered its effective treatment. In the present study, analysis of genomic sequencing-based copy number variations(CNVs) called from 100 kb white blood cell DNA sequence windows by means of semisupervized clustering led to the segregation of patient genomes into the D and V groups, which correlated with the depression and invasion clinical types,respectively, with 89.0% consistency. Application of diagnostic CNV features selected using the correlation-based machine learning method enabled the classification of the CNVs obtained into the D group, V group, total patient group, and control group with an average accuracy of 83.0%. The power of the diagnostic CNV features was 0.98 on average, suggesting that these CNV features could be used for the molecular diagnosis of the major clinical types of PMDD. This demonstrated concordance between the CNV profiles and clinical types of PMDD supported the validity of symptom-based diagnosis of PMDD for differentiating between its two major clinical types, as well as the predominantly genetic nature of PMDD with a host of overlaps between multiple susceptibility genes/pathways and the diagnostic CNV features as indicators of involvement in PMDD etiology.
出处 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2021年第12期1070-1080,共11页 遗传学报(英文版)
基金 supported by grants to HX from University Grants Council(SRF116SC01 UROP18SC06 UROP20SC07) Innovation and Technology Commission(ITS/085/10 ITS113/15FP ITCPD/17-9 ITT/023/17GP ITT/026/18GP)of Hong Kong SAR Shenzhen Municipal Council of Science and Technology,Guangdong(JCYJ20170818113656988) Guangdong Province Basic and Applied Basic Research Fund(2021A1515011169) Shandong Province First Class Disciple Development Grant and Tai-Shan Scholar Program,Shandong and Ministry of Science and Technology(National Science and Technology Major Project,No.2017ZX09301064,2017ZX09301064004) People’s Republic of China,as well as grants from National Natural Science Foundation of China to M.Q.(8157151623)and J.W.(81603510)。
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