Bögershausen Nina, Cavdarli Büsranur, Nagai Taylor H, Milev Miroslav P, Wolff Alexander, Mehranfar Mahsa, Schmidt Julia, Choudhary Dharmendra, Gutiérrez-Gutiérrez Óscar, Cyganek Lukas, Saint-Dic Djenann, Zibat Arne, Köhrer Karl, Wollenweber Tassilo E, Wieczorek Dagmar, Altmüller Janine, Borodina Tatiana, Kaçar Dilek, Haliloğlu Göknur, Li Yun, Thiel Christian, Sacher Michael, Knapik Ela W, Yigit Gökhan, Wollnik Bernd
Institute of Human Genetics, University Medical Center Göttingen, Göttingen, Germany.
Department of Medical Genetics, Ankara Bilkent City Hospital, Ankara, Turkey.
JCI Insight. 2025 Mar 25;10(9). doi: 10.1172/jci.insight.173484. eCollection 2025 May 8.
As a major component of intracellular trafficking, the coat protein complex II (COPII) is indispensable for cellular function during embryonic development and throughout life. The 4 SEC24 proteins (A-D) are essential COPII components involved in cargo selection and packaging. A human disorder corresponding to alterations of SEC24 function is currently known only for SEC24D. Here, we reported that biallelic loss of SEC24C leads to a syndrome characterized by primary microcephaly, brain anomalies, epilepsy, hearing loss, liver dysfunction, anemia, and cataracts in an extended consanguineous family with 4 affected individuals. We showed that knockout of sec24C in zebrafish recapitulated important aspects of the human phenotype. SEC24C-deficient fibroblasts displayed alterations in the expression of several COPII components as well as impaired anterograde trafficking to the Golgi, indicating a severe impact on COPII function. Transcriptome analysis revealed that SEC24C deficiency also affected the proteasome and autophagy pathways. Moreover, a shift in the N-glycosylation pattern and deregulation of the N-glycosylation pathway suggested a possible secondary alteration of protein glycosylation, linking the described disorder with the congenital disorders of glycosylation.
作为细胞内运输的主要组成部分,II型被膜小泡蛋白复合物(COPII)在胚胎发育及整个生命过程中的细胞功能方面不可或缺。4种SEC24蛋白(A - D)是参与货物选择和包装的重要COPII组分。目前已知仅SEC24D存在与SEC24功能改变相关的人类疾病。在此,我们报道在一个有4名患者的近亲家庭中,SEC24C的双等位基因缺失导致一种以原发性小头畸形、脑异常、癫痫、听力丧失、肝功能障碍、贫血和白内障为特征的综合征。我们表明,斑马鱼中sec24C的敲除重现了人类表型的重要方面。SEC24C缺陷的成纤维细胞在几种COPII组分的表达上出现改变,以及向高尔基体的顺向运输受损,表明对COPII功能有严重影响。转录组分析显示,SEC24C缺陷还影响蛋白酶体和自噬途径。此外,N - 糖基化模式的改变和N - 糖基化途径的失调提示蛋白质糖基化可能存在继发性改变,将所描述的疾病与糖基化先天性疾病联系起来。