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LRRC45基因的双等位基因变异损害纤毛生成并导致严重的神经疾病。

Biallelic Variants in LRRC45 Impair Ciliogenesis and Cause a Severe Neurological Disorder.

作者信息

Radhakrishnan Periyasamy, Quadri Neha, Erger Florian, Fuhrmann Nico, Geist Otilia-Maria, Netzer Christian, Khyriem Ibakordor, Muranjan Mamta, Udani Vrajesh, Yeole Mayuri, Mascarenhas Selinda, Limaye Sanket, Siddiqui Shahyan, Upadhyai Priyanka, Shukla Anju

机构信息

Department of Medical Genetics, Kasturba Medical College, Manipal, Manipal Academy of Higher Education, Manipal, India.

Center for Rare Diseases Cologne, University Hospital Cologne, Faculty of Medicine, University of Cologne, Cologne, Germany.

出版信息

Clin Genet. 2025 Mar;107(3):311-322. doi: 10.1111/cge.14663. Epub 2024 Dec 5.

Abstract

Leucine - rich repeat containing 45 protein (LRRC45) protein localizes at the proximal end of centrioles and forms a component of the proteinaceous linker between them, with an important role in centrosome cohesion. In addition, a pool of it localizes at the distal appendages of the modified parent centriole that forms the primary cilium and it has essential functions in the establishment of the transition zone and axonemal extension during early ciliogenesis. Here, we describe three individuals from two unrelated families with severe central nervous system anomalies. Exome sequencing identified biallelic variants in LRRC45 in the affected individuals: P1: c.1402-2A>G; P2 and P3: c.1262G>C (p.Arg421Thr). Investigation of the variant c.1402-2A>G in patient-derived skin fibroblasts revealed that it triggers aberrant splicing, leading to an abnormal LRRC45 transcript that lacks exon 14. Consistent with this the mRNA and protein levels of LRRC45 were drastically reduced in P1-derived fibroblast cells compared to the controls. P1 fibroblasts showed a significant reduction of primary cilia frequency and length. In silico modeling of the missense variant in P2/P3 suggested a destabilizing effect on LRRC45. Given these findings, we propose that the pathogenic loss-of-function variants in LRRC45 are associated with a novel spectrum of neurological ciliopathy phenotypes.

摘要

富含亮氨酸重复序列 45 蛋白(LRRC45)定位于中心粒近端,构成两者之间蛋白质连接体的一个组成部分,在中心体黏附中起重要作用。此外,一部分该蛋白定位于形成初级纤毛的修饰亲代中心粒的远端附属物上,并且在早期纤毛发生过程中对过渡区的建立和轴丝延伸具有重要功能。在此,我们描述了来自两个无亲缘关系家庭的三名患有严重中枢神经系统异常的个体。外显子组测序在受影响个体中鉴定出 LRRC45 的双等位基因变异:P1:c.1402 - 2A>G;P2 和 P3:c.1262G>C(p.Arg421Thr)。对患者来源的皮肤成纤维细胞中变异 c.1402 - 2A>G 的研究表明,它引发异常剪接,导致缺乏外显子 14 的异常 LRRC45 转录本。与此一致的是,与对照相比,P1 来源的成纤维细胞中 LRRC45 的 mRNA 和蛋白水平大幅降低。P1 成纤维细胞显示初级纤毛频率和长度显著降低。对 P2/P3 中错义变异的计算机模拟表明对 LRRC45 有不稳定作用。鉴于这些发现,我们提出 LRRC45 中的致病性功能丧失变异与一种新的神经纤毛病表型谱相关。

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