Concurrent de novo MACF1 mutation and inherited 16p13.11 microduplication in a preterm newborn with hypotonia, joint hyperlaxity and multiple congenital malformations: a case report.

IF 2 3区 医学 Q2 PEDIATRICS BMC Pediatrics Pub Date : 2024-08-16 DOI:10.1186/s12887-024-04628-y
Lanlan Mi, Ruen Yao, Weiwei Guo, Jian Wang, Guoqing Zhang, Xiuxia Ye
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Abstract

Background: The MACF1 gene, found on chromosome 1p34.3, is vital for controlling cytoskeleton dynamics, cell movement, growth, and differentiation. It consists of 101 exons, spanning over 270 kb. The 16p13.11 microduplication syndrome results from the duplication of 16p13.11 chromosome copies and is associated with various neurodevelopmental and physiological abnormalities. Both MACF1 and 16p13.11 microduplication have significant impacts on neural development, potentially leading to nerve damage or neurological diseases. This study presents a unique case of a patient simultaneously experiencing a de novo MACF1 mutation and a hereditary 16p13.11 microduplication, which has not been reported previously.

Case presentation: In this report, we describe a Chinese preterm newborn girl exhibiting the typical characteristics of 16.13.11 microduplication syndrome. These features include developmental delay, respiratory issues, feeding problems, muscle weakness, excessive joint movement, and multiple congenital abnormalities. Through whole-exome sequencing, we identified a disease-causing mutation in the MACF1 gene (c.15266T > C / p. Met5089Thr). Additionally, after microarray analysis, we confirmed the presence of a 16p13.11 microduplication (chr16:14,916,289 - 16,315,688), which was inherited from the mother.

Conclusions: The patient's clinical presentation, marked by muscle weakness and multiple birth defects, may be attributed to both the de novo MACF1 mutation and the 16p13.11 duplication, which could have further amplified her severe symptoms. Genetic testing for individuals with complex clinical manifestations can offer valuable insights for diagnosis and serve as a reference for genetic counseling for both patients and their families.

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一例早产新生儿并发新发 MACF1 基因突变和遗传性 16p13.11 微重复:肌张力低下、关节过度松弛和多发性先天畸形的病例报告。
背景:MACF1 基因位于染色体 1p34.3,对控制细胞骨架动力学、细胞运动、生长和分化至关重要。它由 101 个外显子组成,跨度超过 270 kb。16p13.11 微重复综合征是由 16p13.11 染色体拷贝的重复造成的,与各种神经发育和生理异常有关。MACF1 和 16p13.11 微重复都对神经发育有重大影响,可能导致神经损伤或神经系统疾病。本研究介绍了一例同时患有新发 MACF1 突变和遗传性 16p13.11 微重复的独特病例,该病例此前从未报道过:在本报告中,我们描述了一名中国早产新生女婴,她表现出 16.13.11 微重复综合征的典型特征。这些特征包括发育迟缓、呼吸问题、喂养问题、肌无力、关节活动过度以及多种先天性畸形。通过全外显子组测序,我们确定了 MACF1 基因的致病突变(c.15266T > C / p. Met5089Thr)。此外,经过微阵列分析,我们确认了患者存在一个 16p13.11 微重复(chr16:14,916,289 - 16,315,688),该基因遗传自母亲:结论:该患者的临床表现以肌无力和多种先天缺陷为特征,这可能与 MACF1 基因突变和 16p13.11 重合有关,后者可能会进一步加重她的严重症状。对具有复杂临床表现的个体进行基因检测,可为诊断提供有价值的见解,并为患者及其家属的遗传咨询提供参考。
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来源期刊
BMC Pediatrics
BMC Pediatrics PEDIATRICS-
CiteScore
3.70
自引率
4.20%
发文量
683
审稿时长
3-8 weeks
期刊介绍: BMC Pediatrics is an open access journal publishing peer-reviewed research articles in all aspects of health care in neonates, children and adolescents, as well as related molecular genetics, pathophysiology, and epidemiology.
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