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一名具有独特多基因背景的老年个体患多小脑回畸形的罕见病例。

A Rare Case of Polymicrogyria in an Elderly Individual With Unique Polygenic Underlining.

作者信息

Frolov Andrey, Atwood Stuart G, Guzman Miguel A, Martin John R

机构信息

Department of Surgery - Center for Anatomical Science and Education, Saint Louis University School of Medicine, St. Louis, USA.

Department of Pathology, Saint Louis University School of Medicine, St. Louis, USA.

出版信息

Cureus. 2024 Nov 23;16(11):e74300. doi: 10.7759/cureus.74300. eCollection 2024 Nov.

Abstract

Polymicrogyria (PMG) is the most common malformation of cortical development (MCD) and presents as an irregularly patterned cortical surface with numerous small gyri and shallow sulci leading to various neurological deficits including developmental delays, intellectual disability, epilepsy, and language and motor issues. The presentation of PMG varies and is often found in conjunction with other congenital anomalies. Histologically, PMG features an abnormal cortical structure and dyslamination, resulting in its classification as a defect of neuronal migration and organization. Due in part to a variety of etiologies, little is known about the molecular mechanism(s) underlining PMG. To address this gap in knowledge, a case study is presented where an elderly individual with a medical history of unspecified PMG was examined postmortem by using a combination of anatomical, magnetic resonance imaging (MRI), histopathological, and genetic techniques. The results of the study allowed the classification of this case as bifrontal PMG. The genetic screening by whole exome sequencing (WES) on the Illumina Next Generation Sequencing (NGS) platform yielded 83 rare (minor allele frequency, MAF ≤ 0.01) pathological/deleterious variants where none of the respective genes has been previously linked to PMG. However, a subsequent analysis of those variants revealed that a significant number of affected genes were associated with most of the biological processes known to be impaired in PMG thereby pointing toward a polygenic nature in the present case. One of the notable features of the WES dataset was the presence of rare pathological/deleterious variants of genes (, , , , , and ) involved in the regulation of Wnt signaling potentially highlighting the latter as an important PMG contributor in the present case. Notably, warrants a closer look as a candidate gene for PMG because it not only regulates cortical patterning but has also been recently linked to two cases of bifrontal PMG with multiple congenital anomalies through its compound heterozygous mutations.

摘要

多小脑回畸形(PMG)是最常见的皮质发育畸形(MCD),表现为皮质表面呈不规则图案,有许多小脑回和浅沟,导致各种神经功能缺损,包括发育迟缓、智力残疾、癫痫以及语言和运动问题。PMG的表现各不相同,且常与其他先天性异常同时出现。在组织学上,PMG具有异常的皮质结构和分层紊乱,因此被归类为神经元迁移和组织缺陷。部分由于病因多样,关于PMG潜在的分子机制知之甚少。为填补这一知识空白,本文呈现了一个病例研究,一名有未明确类型PMG病史的老年人在死后通过解剖、磁共振成像(MRI)、组织病理学和基因技术相结合的方法进行了检查。研究结果将该病例归类为双侧额叶PMG。在Illumina下一代测序(NGS)平台上通过全外显子组测序(WES)进行的基因筛查产生了83个罕见(次要等位基因频率,MAF≤0.01)的病理性/有害变异,其中没有一个相关基因此前与PMG有联系。然而,对这些变异的后续分析表明,大量受影响的基因与已知在PMG中受损的大多数生物学过程相关,从而表明本病例具有多基因性质。WES数据集的一个显著特征是存在参与Wnt信号调节的基因(、、、、和)的罕见病理性/有害变异,这可能突出了Wnt信号在本病例中是PMG的一个重要促成因素。值得注意的是,作为PMG的候选基因值得进一步研究,因为它不仅调节皮质模式形成,而且最近还通过其复合杂合突变与两例伴有多种先天性异常的双侧额叶PMG病例相关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/955a/11665267/4456b4296cad/cureus-0016-00000074300-i01.jpg

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