综述和更新了综合征型肥胖表型的遗传表征算法。

IF 1.8 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Current Genomics Pub Date : 2022-07-05 DOI:10.2174/1389202923666220426093436
Raquel Rodríguez-López, Fátima Gimeno-Ferrer, David Albuquerque do Santos, Irene Ferrer-Bolufer, Carola Guzmán Luján, Otilia Zomeño Alcalá, Amor García-Banacloy, Virginia Ballesteros Cogollos, Carlos Sánchez Juan
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引用次数: 0

摘要

背景:具有与智力残疾相关的早发性严重肥胖表型的个体可以有从单基因到复杂遗传特征的分子诊断。严重超重是综合征生理表现的主要标志,在大多数病例中,预测单基因和/或多基因风险概况的影响极其复杂。目前,将罕见的单基因基础作为大多数与智力残疾相关的肥胖病例的主要病因,在科学上是贫乏的。负责这两种实体的分子基础的多样性使得当前常规强大的基因组学诊断工具的应用必不可少。目的:临床调查这些难以诊断的患者需要儿科医生和神经科医生使用优化的体征和症状描述来改善基因型相关性。方法:采用现代综合生物信息学策略,由经验丰富的多学科临床团队实施。患者家族表型的评估也很重要。结果:下一步包括放弃单基因典型肥胖综合征,考虑罕见的独特分子病例,然后是多基因基础。对新技术的应用及其诊断阶段进行适当的管理对于实现良好的成本/效率平衡至关重要。结论:在目前的临床管理中,有必要考虑导致智力残疾的基因改变患者肥胖的潜在风险突变的巧合。在这篇综述中,我们描述了一种用于综合征型肥胖患者分子表征和诊断的更新算法。
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Reviewed and updated Algorithm for Genetic Characterization of Syndromic Obesity Phenotypes.

Background: Individuals with a phenotype of early-onset severe obesity associated with intellectual disability can have molecular diagnoses ranging from monogenic to complex genetic traits. Severe overweight is the major sign of a syndromic physical appearance and predicting the influence of a single gene and/or polygenic risk profile is extremely complicated among the majority of the cases. At present, considering rare monogenic bases as the principal etiology for the majority of obesity cases associated with intellectual disability is scientifically poor. The diversity of the molecular bases responsible for the two entities makes the appliance of the current routinely powerful genomics diagnostic tools essential. Objective: Clinical investigation of these difficult-to-diagnose patients requires pediatricians and neurologists to use optimized descriptions of signs and symptoms to improve genotype correlations. Methods: The use of modern integrated bioinformatics strategies which are conducted by experienced multidisciplinary clinical teams. Evaluation of the phenotype of the patient's family is also of importance. Results: The next step involves discarding the monogenic canonical obesity syndromes and considering infrequent unique molecular cases, and/or then polygenic bases. Adequate management of the application of the new technique and its diagnostic phases is essential for achieving good cost/efficiency balances. Conclusion: With the current clinical management, it is necessary to consider the potential coincidence of risk mutations for obesity in patients with genetic alterations that induce intellectual disability. In this review, we describe an updated algorithm for the molecular characterization and diagnosis of patients with a syndromic obesity phenotype.

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来源期刊
Current Genomics
Current Genomics 生物-生化与分子生物学
CiteScore
5.20
自引率
0.00%
发文量
29
审稿时长
>0 weeks
期刊介绍: Current Genomics is a peer-reviewed journal that provides essential reading about the latest and most important developments in genome science and related fields of research. Systems biology, systems modeling, machine learning, network inference, bioinformatics, computational biology, epigenetics, single cell genomics, extracellular vesicles, quantitative biology, and synthetic biology for the study of evolution, development, maintenance, aging and that of human health, human diseases, clinical genomics and precision medicine are topics of particular interest. The journal covers plant genomics. The journal will not consider articles dealing with breeding and livestock. Current Genomics publishes three types of articles including: i) Research papers from internationally-recognized experts reporting on new and original data generated at the genome scale level. Position papers dealing with new or challenging methodological approaches, whether experimental or mathematical, are greatly welcome in this section. ii) Authoritative and comprehensive full-length or mini reviews from widely recognized experts, covering the latest developments in genome science and related fields of research such as systems biology, statistics and machine learning, quantitative biology, and precision medicine. Proposals for mini-hot topics (2-3 review papers) and full hot topics (6-8 review papers) guest edited by internationally-recognized experts are welcome in this section. Hot topic proposals should not contain original data and they should contain articles originating from at least 2 different countries. iii) Opinion papers from internationally recognized experts addressing contemporary questions and issues in the field of genome science and systems biology and basic and clinical research practices.
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