Yuan Xiangshu, Wang Ya, Li Xiyuan, Zhong Sheng, Zhou Danyi, Lin Xianlong, Fang Hezhi, Yang Yanling, Wang Maofeng
Key Laboratory of Laboratory Medicine, Ministry of Education, Zhejiang Provincial Key Laboratory of Medical Genetics, School of Laboratory Medicine and Life Sciences, Wenzhou Medical University, Wenzhou, 325035, Zhejiang, China.
Baylor Genetics, Houston, TX, 77030, USA.
J Mol Med (Berl). 2024 Jul;102(7):913-926. doi: 10.1007/s00109-024-02454-4. Epub 2024 May 16.
DEAD-box helicase 53 (DDX53) is a member of the DEAD-box protein family of RNA helicases. Unlike other family members that are responsible for RNA metabolism, the biological function of DDX53 and its impact on the human condition are unclear. Herein, we found a full-length DDX53 deletion mutation in a hereditary spastic paraplegia-like (HSP-like) patient with lower extremity spasticity, walking disorder, visual impairment, and lateral ventricular white matter lesions. Bioinformatic analysis revealed that DDX53 was mainly expressed in the cerebellar cortex and may function as a tissue-specific RNA helicase. Transcriptome analysis showed that the expression of multiple brain-associated genes involved in synapse organization, neuron function, and neuromuscular junctions was affected by DDX53 depletion. Moreover, RNA immunoprecipitation sequencing (RIP-seq) analysis showed that DDX53 interacted with 176 genes, and 96 of these genes were associated with the execution of neurofunction, particularly in the regulation of cell projection organization and nervous system development. Collectively, although a more specified cell or animal model is required to fully understand the functional role of DDX53 in the human brain, we report for the first time that the patient with DDX53 defects exhibits HSP-like symptoms and that DDX53 is essential for maintaining neuronal function, with loss-of-function mutation in DDX53 potentially leading to HSP due to impaired RNA metabolism in the nervous system. KEY MESSAGES: DDX53 deficiency was first reported to be associated with HSP disorder. DDX53 exhibited minimal impact on mitochondrial function. DDX53 impaired RNA metabolism in the nervous system.
DEAD盒解旋酶53(DDX53)是RNA解旋酶的DEAD盒蛋白家族成员。与负责RNA代谢的其他家族成员不同,DDX53的生物学功能及其对人类疾病的影响尚不清楚。在此,我们在一名患有下肢痉挛、行走障碍、视力障碍和侧脑室白质病变的遗传性痉挛性截瘫样(HSP样)患者中发现了一个全长DDX53缺失突变。生物信息学分析表明,DDX53主要在小脑皮质中表达,可能作为一种组织特异性RNA解旋酶发挥作用。转录组分析显示,多个参与突触组织、神经元功能和神经肌肉接头的脑相关基因的表达受DDX53缺失的影响。此外RNA免疫沉淀测序(RIP-seq)分析表明,DDX53与176个基因相互作用,其中96个基因与神经功能的执行相关,特别是在细胞突起组织调节和神经系统发育方面。总体而言,尽管需要更特定的细胞或动物模型来充分了解DDX53在人脑中的功能作用,但我们首次报告,DDX53缺陷患者表现出HSP样症状,并且DDX53对维持神经元功能至关重要,DDX53功能丧失突变可能由于神经系统中RNA代谢受损而导致HSP。关键信息:首次报道DDX53缺陷与HSP疾病相关。DDX53对线粒体功能影响极小。DDX53损害神经系统中的RNA代谢。