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DENND5B 中的新生变异导致神经发育障碍。

De novo variants in DENND5B cause a neurodevelopmental disorder.

机构信息

Department of Neurosciences, Rehabilitation, Ophthalmology, Genetics, Maternal and Child Health, University of Genoa, Genoa, Italy; Pediatric Neurology and Muscular Diseases Unit, IRCCS Istituto Giannina Gaslini, Genoa, Italy; UOC Genetica Medica, IRCCS Giannina Gaslini, Genoa, Italy.

UOC Genetica Medica, IRCCS Giannina Gaslini, Genoa, Italy.

出版信息

Am J Hum Genet. 2024 Mar 7;111(3):529-543. doi: 10.1016/j.ajhg.2024.02.001. Epub 2024 Feb 21.

Abstract

The Rab family of guanosine triphosphatases (GTPases) includes key regulators of intracellular transport and membrane trafficking targeting specific steps in exocytic, endocytic, and recycling pathways. DENND5B (Rab6-interacting Protein 1B-like protein, R6IP1B) is the longest isoform of DENND5, an evolutionarily conserved DENN domain-containing guanine nucleotide exchange factor (GEF) that is highly expressed in the brain. Through exome sequencing and international matchmaking platforms, we identified five de novo variants in DENND5B in a cohort of five unrelated individuals with neurodevelopmental phenotypes featuring cognitive impairment, dysmorphism, abnormal behavior, variable epilepsy, white matter abnormalities, and cortical gyration defects. We used biochemical assays and confocal microscopy to assess the impact of DENND5B variants on protein accumulation and distribution. Then, exploiting fluorescent lipid cargoes coupled to high-content imaging and analysis in living cells, we investigated whether DENND5B variants affected the dynamics of vesicle-mediated intracellular transport of specific cargoes. We further generated an in silico model to investigate the consequences of DENND5B variants on the DENND5B-RAB39A interaction. Biochemical analysis showed decreased protein levels of DENND5B mutants in various cell types. Functional investigation of DENND5B variants revealed defective intracellular vesicle trafficking, with significant impairment of lipid uptake and distribution. Although none of the variants affected the DENND5B-RAB39A interface, all were predicted to disrupt protein folding. Overall, our findings indicate that DENND5B variants perturb intracellular membrane trafficking pathways and cause a complex neurodevelopmental syndrome with variable epilepsy and white matter involvement.

摘要

Rab 家族的鸟嘌呤三磷酸酶 (GTPases) 包括细胞内运输和膜运输的关键调节剂,靶向胞吐、胞内体和回收途径中的特定步骤。DENND5B(Rab6 相互作用蛋白 1B 样蛋白,R6IP1B)是 DENND5 的最长异构体,DENND5 是一种进化上保守的 DENN 结构域含有鸟嘌呤核苷酸交换因子 (GEF),在大脑中高度表达。通过外显子组测序和国际匹配平台,我们在一组具有神经发育表型的五个无亲缘关系的个体中发现了 DENND5B 中的五个从头变体,这些个体的特征是认知障碍、畸形、异常行为、可变癫痫、白质异常和皮质回旋缺陷。我们使用生化测定和共聚焦显微镜来评估 DENND5B 变体对蛋白质积累和分布的影响。然后,利用荧光脂质货物结合高内涵成像和活细胞分析,我们研究了 DENND5B 变体是否影响特定货物囊泡介导的细胞内运输的动力学。我们进一步生成了一个计算模型来研究 DENND5B 变体对 DENND5B-RAB39A 相互作用的影响。生化分析显示,各种细胞类型中 DENND5B 突变体的蛋白水平降低。DENND5B 变体的功能研究显示,细胞内囊泡运输缺陷,脂质摄取和分布显著受损。尽管没有一种变体影响 DENND5B-RAB39A 界面,但所有变体都被预测会破坏蛋白质折叠。总的来说,我们的研究结果表明,DENND5B 变体扰乱了细胞内膜运输途径,并导致具有可变癫痫和白质受累的复杂神经发育综合征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47d3/10940048/af4859b7b98e/fx1.jpg

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