Anshun Zheng, Ting Yin, Qin Zheng, Rong Zhang, Yongan Wang, Shanshan Ma, Yali Zhao, Leilei Wang
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The clinical phenotype and relevant genes were searched in the Online Mendelian Inheritance in Man (OMIM) and the UK Database of Genomic Variation and Phenotype in Humans using Ensembl Resources (DECIPHER). The pathogenicity of chromosomal variation was analyzed based on guidelines from the American College of Medical Genetics and Genomics (ACMG). Relevant literature was searched from the CNKI, Wanfang Data, and PubMed databases by using keywords such as \"10q\" \"duplication\" and \"trisomy\", with the time set as from the establishment of database to December 1, 2023. This study has been approved by the Medical Ethics Committee of the Lianyungang Maternal and Child Health Care Hospital (No. XM2023030).</p><p><strong>Results: </strong>The clinical phenotype of child had included growth retardation, intellectual disability, and ASD. G-banded chromosomal analysis suggested that the child has a karyotype of 46,XY,dup(10)(q23.31q24.33), whilst both of his parents were normal. CMA analysis of the child revealed that the child was arr[19]10q23.31q24.33(87603382_104948862)×3, with a 17.34 Mb duplication in the 10q23.31q24.33 region. Search of the OMIM database suggested that the duplicated segment has contained 171 genes associated with various diseases, and search of the DECIPHER database has identified cases with overlapping with the duplication. A search of the PubMed database has identified 2 publications involving 2 patients with chromosomal duplications overlapping the 10q23.31q24.33 region with a segment length of > 10 Mb. The 2 patients had mainly manifested growth retardation, intellectual disability, ASD, and facial and limb malformations. The main pathogenic genes had included PTEN, WNT8B, LZTS2, NFKB2, PAX2, KIF11, FRA10AC1, and CNNM2. No similar case was retrieved from the CNKI and Wanfang Data databases.</p><p><strong>Conclusion: </strong>The partial 10q duplication as a novel CNV involving genes such as PTEN and WNT8B probably underlay the growth retardation, intellectual disability and ASD in child 1 . This study has enriched the genotype-phenotype spectrum of patients with partial 10q23.31q24.33 duplications.</p>","PeriodicalId":39319,"journal":{"name":"中华医学遗传学杂志","volume":"41 11","pages":"1371-1378"},"PeriodicalIF":0.0000,"publicationDate":"2024-11-10","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"[Clinical phenotype and genetic analysis of a child with partial duplication of 10q and a literature review].\",\"authors\":\"Anshun Zheng, Ting Yin, Qin Zheng, Rong Zhang, Yongan Wang, Shanshan Ma, Yali Zhao, Leilei Wang\",\"doi\":\"10.3760/cma.j.cn511374-20231211-00314\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Objective: </strong>To explore the clinical phenotype and pathogenesis of a child with partial duplication in the long arm of chromosome 10 (10q), and conduct a review of relevant literature.</p><p><strong>Methods: </strong>A child presented at Lianyungang Maternal and Child Health Care Hospital in April 2018 for growth retardation, intellectual disability, and autism spectrum disorder (ASD) was selected as the study subject. Peripheral blood samples were collected from the child and his parents for G-banded chromosomal karyotyping analysis. Genomic DNA was also extracted for chromosomal microarray analysis (CMA). The clinical phenotype and relevant genes were searched in the Online Mendelian Inheritance in Man (OMIM) and the UK Database of Genomic Variation and Phenotype in Humans using Ensembl Resources (DECIPHER). The pathogenicity of chromosomal variation was analyzed based on guidelines from the American College of Medical Genetics and Genomics (ACMG). Relevant literature was searched from the CNKI, Wanfang Data, and PubMed databases by using keywords such as \\\"10q\\\" \\\"duplication\\\" and \\\"trisomy\\\", with the time set as from the establishment of database to December 1, 2023. This study has been approved by the Medical Ethics Committee of the Lianyungang Maternal and Child Health Care Hospital (No. XM2023030).</p><p><strong>Results: </strong>The clinical phenotype of child had included growth retardation, intellectual disability, and ASD. G-banded chromosomal analysis suggested that the child has a karyotype of 46,XY,dup(10)(q23.31q24.33), whilst both of his parents were normal. CMA analysis of the child revealed that the child was arr[19]10q23.31q24.33(87603382_104948862)×3, with a 17.34 Mb duplication in the 10q23.31q24.33 region. Search of the OMIM database suggested that the duplicated segment has contained 171 genes associated with various diseases, and search of the DECIPHER database has identified cases with overlapping with the duplication. A search of the PubMed database has identified 2 publications involving 2 patients with chromosomal duplications overlapping the 10q23.31q24.33 region with a segment length of > 10 Mb. The 2 patients had mainly manifested growth retardation, intellectual disability, ASD, and facial and limb malformations. The main pathogenic genes had included PTEN, WNT8B, LZTS2, NFKB2, PAX2, KIF11, FRA10AC1, and CNNM2. No similar case was retrieved from the CNKI and Wanfang Data databases.</p><p><strong>Conclusion: </strong>The partial 10q duplication as a novel CNV involving genes such as PTEN and WNT8B probably underlay the growth retardation, intellectual disability and ASD in child 1 . 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引用次数: 0
摘要
目的探讨10号染色体(10q)长臂部分重复患儿的临床表型及发病机制,并对相关文献进行综述:选取2018年4月因生长发育迟缓、智力障碍、自闭症谱系障碍(ASD)就诊于连云港市妇幼保健院的一名患儿作为研究对象。研究人员采集了患儿及其父母的外周血样本,用于 G 带染色体核型分析。还提取了基因组 DNA 进行染色体微阵列分析(CMA)。临床表型和相关基因在《在线人类孟德尔遗传》(Online Mendelian Inheritance in Man,OMIM)和英国《利用 Ensembl 资源的人类基因组变异和表型数据库》(UK Database of Genomic Variation and Phenotype in Humans using Ensembl Resources,DECIPHER)中进行了检索。染色体变异的致病性根据美国医学遗传学和基因组学学院(ACMG)的指南进行分析。以 "10q"、"重复 "和 "三体 "为关键词,从 CNKI、万方数据和 PubMed 数据库中检索相关文献,检索时间为数据库建立后至 2023 年 12 月 1 日。本研究已获得连云港市妇幼保健院医学伦理委员会批准(编号:XM2023030):结果:患儿的临床表型包括生长迟缓、智力障碍和自闭症。G带染色体分析显示,患儿的核型为46,XY,dup(10)(q23.31q24.33),而其父母均正常。对患儿的 CMA 分析显示,患儿的 Ar[19]10q23.31q24.33(87603382_104948862)×3 在 10q23.31q24.33 区域有 17.34 Mb 的重复。在 OMIM 数据库中搜索发现,该重复区段包含 171 个与各种疾病相关的基因,在 DECIPHER 数据库中搜索发现了与该重复区段重叠的病例。在PubMed数据库中搜索发现了2篇涉及2名染色体重复段与10q23.31q24.33区域重叠的患者的文章,重复段长度大于10 Mb。这两名患者主要表现为生长迟缓、智力障碍、自闭症、面部和肢体畸形。主要致病基因包括 PTEN、WNT8B、LZTS2、NFKB2、PAX2、KIF11、FRA10AC1 和 CNNM2。CNKI和万方数据数据库中未检索到类似病例:结论:10q部分重复作为一种新的CNV,涉及PTEN和WNT8B等基因,可能是1号患儿生长迟缓、智力障碍和ASD的基础。这项研究丰富了 10q23.31q24.33 部分重复患者的基因型-表型谱。
[Clinical phenotype and genetic analysis of a child with partial duplication of 10q and a literature review].
Objective: To explore the clinical phenotype and pathogenesis of a child with partial duplication in the long arm of chromosome 10 (10q), and conduct a review of relevant literature.
Methods: A child presented at Lianyungang Maternal and Child Health Care Hospital in April 2018 for growth retardation, intellectual disability, and autism spectrum disorder (ASD) was selected as the study subject. Peripheral blood samples were collected from the child and his parents for G-banded chromosomal karyotyping analysis. Genomic DNA was also extracted for chromosomal microarray analysis (CMA). The clinical phenotype and relevant genes were searched in the Online Mendelian Inheritance in Man (OMIM) and the UK Database of Genomic Variation and Phenotype in Humans using Ensembl Resources (DECIPHER). The pathogenicity of chromosomal variation was analyzed based on guidelines from the American College of Medical Genetics and Genomics (ACMG). Relevant literature was searched from the CNKI, Wanfang Data, and PubMed databases by using keywords such as "10q" "duplication" and "trisomy", with the time set as from the establishment of database to December 1, 2023. This study has been approved by the Medical Ethics Committee of the Lianyungang Maternal and Child Health Care Hospital (No. XM2023030).
Results: The clinical phenotype of child had included growth retardation, intellectual disability, and ASD. G-banded chromosomal analysis suggested that the child has a karyotype of 46,XY,dup(10)(q23.31q24.33), whilst both of his parents were normal. CMA analysis of the child revealed that the child was arr[19]10q23.31q24.33(87603382_104948862)×3, with a 17.34 Mb duplication in the 10q23.31q24.33 region. Search of the OMIM database suggested that the duplicated segment has contained 171 genes associated with various diseases, and search of the DECIPHER database has identified cases with overlapping with the duplication. A search of the PubMed database has identified 2 publications involving 2 patients with chromosomal duplications overlapping the 10q23.31q24.33 region with a segment length of > 10 Mb. The 2 patients had mainly manifested growth retardation, intellectual disability, ASD, and facial and limb malformations. The main pathogenic genes had included PTEN, WNT8B, LZTS2, NFKB2, PAX2, KIF11, FRA10AC1, and CNNM2. No similar case was retrieved from the CNKI and Wanfang Data databases.
Conclusion: The partial 10q duplication as a novel CNV involving genes such as PTEN and WNT8B probably underlay the growth retardation, intellectual disability and ASD in child 1 . This study has enriched the genotype-phenotype spectrum of patients with partial 10q23.31q24.33 duplications.
期刊介绍:
Chinese Journal of Medical Genetics is a medical journal, founded in 1984, under the supervision of the China Association for Science and Technology, sponsored by the Chinese Medical Association (hosted by Sichuan University), and is now a monthly magazine, which attaches importance to academic orientation, adheres to the scientific, scholarly, advanced, and innovative, and has a certain degree of influence in the industry.
Chinese Journal of Medical Genetics is a journal of Peking University, and is now included in Peking University Journal (Chinese Journal of Humanities and Social Sciences), CSCD Source Journals of Chinese Science Citation Database (with extended version), Statistical Source Journals (China Science and Technology Dissertation Outstanding Journals), Zhi.com (in Chinese), Wipu (in Chinese), Wanfang (in Chinese), CA Chemical Abstracts (U.S.), JST (Japan Science and Technology Science and Technology), and JST (Japan Science and Technology Science and Technology Research Center). ), JST (Japan Science and Technology Agency), Pж (AJ) Abstracts Journal (Russia), Copernicus Index (Poland), Cambridge Scientific Abstracts, Abstracts and Citation Database, Abstracts Magazine, Medical Abstracts, and so on.