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SYNGAP1综合征与大脑基因登记处。

SYNGAP1 Syndrome and the Brain Gene Registry.

作者信息

Greco Melissa R, Chatterjee Maya, Taylor Alexa M, Gropman Andrea L

机构信息

Division of Neurogenetics and Neurodevelopmental Pediatrics, Children's National Hospital, Washington, DC 20010, USA.

St. Jude Children's Research Hospital, Memphis, TN 38105, USA.

出版信息

Genes (Basel). 2025 Mar 30;16(4):405. doi: 10.3390/genes16040405.

Abstract

BACKGROUND

The human brain relies on complex synaptic communication regulated by key genes such as . encodes the GTPase-Activating Protein (SYNGAP), a critical synaptic plasticity and neuronal excitability regulator. Impaired SYNGAP1 function leads to neurodevelopmental disorders (NDDs) characterized by intellectual disability (ID), epilepsy, and behavioral abnormalities. These variants disrupt Ras signaling, altering AMPA receptor transport and synaptic plasticity and contributing to cognitive and motor difficulties. Despite advancements, challenges remain in defining genotype-phenotype correlations and distinguishing SYNGAP1-related disorders from other NDDs, which could improve underdiagnosis and misdiagnosis. Brain Gene Registry: The Brain Gene Registry (BGR) was established as a collaborative initiative, consolidating genomic and phenotypic data across multiple research centers. This database allows for extensive analyses, facilitating improved diagnostic accuracy, earlier interventions, and targeted therapeutic strategies. The BGR enhances our understanding of rare genetic conditions and is critical for advancing research on SYNGAP1-related disorders.

CONCLUSIONS

While no FDA-approved treatments exist for SYNGAP1-related disorders, several therapeutic approaches are being investigated. These include taurine supplementation, ketogenic diets, and molecular strategies such as antisense oligonucleotide therapy to restore expression. Behavioral and rehabilitative interventions remain key for managing developmental and cognitive symptoms. Advancing research through initiatives like the BGR is crucial for refining genotype-phenotype associations and developing precision medicine approaches. A comprehensive understanding of SYNGAP1-related disorders will improve clinical outcomes and patient care, underscoring the need for continued interdisciplinary collaboration in neurodevelopmental genetics.

摘要

背景

人类大脑依赖于由关键基因调控的复杂突触通讯,例如……编码GTP酶激活蛋白(SYNGAP),这是一种关键的突触可塑性和神经元兴奋性调节因子。SYNGAP1功能受损会导致神经发育障碍(NDDs),其特征为智力残疾(ID)、癫痫和行为异常。这些变异会破坏Ras信号传导,改变AMPA受体转运和突触可塑性,并导致认知和运动困难。尽管取得了进展,但在定义基因型-表型相关性以及将SYNGAP1相关疾病与其他NDDs区分开来方面仍存在挑战,而这可能会改善诊断不足和误诊的情况。大脑基因登记处:大脑基因登记处(BGR)是作为一项合作倡议而建立的,整合了多个研究中心的基因组和表型数据。该数据库允许进行广泛的分析,有助于提高诊断准确性、早期干预和制定针对性的治疗策略。BGR增强了我们对罕见遗传疾病的理解,对于推进SYNGAP1相关疾病的研究至关重要。

结论

虽然目前尚无FDA批准的针对SYNGAP1相关疾病的治疗方法,但正在研究几种治疗方法。这些方法包括补充牛磺酸、生酮饮食以及分子策略,如反义寡核苷酸疗法以恢复……的表达。行为和康复干预仍然是管理发育和认知症状的关键。通过像BGR这样的倡议推进研究对于完善基因型-表型关联和开发精准医学方法至关重要。对SYNGAP1相关疾病的全面理解将改善临床结果和患者护理,强调了在神经发育遗传学中持续进行跨学科合作的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09ac/12026819/68c4dc86b55f/genes-16-00405-g001.jpg

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