ATXN2L primarily interacts with NUFIP2, the absence of ATXN2L results in NUFIP2 depletion, and the ATXN2-polyQ expansion triggers NUFIP2 accumulation

IF 5.1 2区 医学 Q1 NEUROSCIENCES
Jana Key , Luis-Enrique Almaguer-Mederos , Arvind Reddy Kandi , Nesli-Ece Sen , Suzana Gispert , Gabriele Köpf , David Meierhofer , Georg Auburger
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引用次数: 0

Abstract

The cytoplasmic Ataxin-2 (ATXN2) protein associates with TDP-43 in stress granules (SG) where RNA quality control occurs. Mutations in this pathway underlie Spinocerebellar Ataxia type 2 (SCA2) and Amyotrophic Lateral Sclerosis. In contrast, Ataxin-2-like (ATXN2L) is predominantly perinuclear, more abundant, and essential for embryonic life. Its sequestration into ATXN2 aggregates may contribute to disease. In this study, we utilized two approaches to clarify the roles of ATXN2L. First, we identified interactors through co-immunoprecipitation in both wild-type and ATXN2L-null murine embryonic fibroblasts. Second, we assessed the proteome profile effects using mass spectrometry in these cells. Additionally, we examined the accumulation of ATXN2L interactors in the SCA2 mouse model, Atxn2-CAG100-KnockIn (KIN). We observed that RNA-binding proteins, including PABPN1, NUFIP2, MCRIP2, RBMS1, LARP1, PTBP1, FMR1, RPS20, FUBP3, MBNL2, ZMAT3, SFPQ, CSDE1, HNRNPK, and HNRNPDL, exhibit a stronger association with ATXN2L compared to established interactors like ATXN2, PABPC1, LSM12, and G3BP2. Additionally, ATXN2L interacted with components of the actin complex, such as SYNE2, LMOD1, ACTA2, FYB, and GOLGA3. We noted that oxidative stress increased HNRNPK but decreased SYNE2 association, which likely reflects the relocalization of SG. Proteome profiling revealed that NUFIP2 and SYNE2 are depleted in ATXN2L-null fibroblasts. Furthermore, NUFIP2 homodimers and SYNE1 accumulate during the ATXN2 aggregation process in KIN 14-month-old spinal cord tissues. The functions of ATXN2L and its interactors are therefore critical in RNA granule trafficking and surveillance, particularly for the maintenance of differentiated neurons.
ATXN2L主要与NUFIP2相互作用,缺乏ATXN2L导致NUFIP2耗竭,而ATXN2-polyQ扩增触发NUFIP2积累
胞质Ataxin-2 (ATXN2)蛋白在RNA质量控制发生的应激颗粒(SG)中与TDP-43结合。该通路的突变是脊髓小脑性共济失调2型(SCA2)和肌萎缩性侧索硬化症的基础。相比之下,Ataxin-2-like (ATXN2L)主要是在核周围,更丰富,对胚胎生命至关重要。它在ATXN2聚集体中的隔离可能导致疾病。在本研究中,我们使用了两种方法来阐明ATXN2L的作用。首先,我们在野生型和atxn2l缺失的小鼠胚胎成纤维细胞中通过共免疫沉淀鉴定了相互作用物。其次,我们在这些细胞中使用质谱法评估了蛋白质组谱的影响。此外,我们检测了ATXN2L相互作用物在SCA2小鼠模型Atxn2-CAG100-KnockIn (KIN)中的积累。我们观察到rna结合蛋白,包括PABPN1、NUFIP2、MCRIP2、RBMS1、LARP1、PTBP1、FMR1、RPS20、FUBP3、MBNL2、ZMAT3、SFPQ、CSDE1、HNRNPK和HNRNPDL,与ATXN2L相比,与ATXN2、PABPC1、LSM12和G3BP2具有更强的相关性。此外,ATXN2L与肌动蛋白复合物的组分相互作用,如SYNE2、LMOD1、ACTA2、FYB和GOLGA3。我们注意到氧化应激增加了HNRNPK,但减少了SYNE2的关联,这可能反映了SG的重新定位。蛋白质组分析显示,NUFIP2和SYNE2在atxn2l缺失的成纤维细胞中缺失。此外,在14月龄的KIN脊髓组织中,NUFIP2同型二聚体和SYNE1在ATXN2聚集过程中积累。因此,ATXN2L及其相互作用物的功能在RNA颗粒运输和监视中至关重要,特别是在维持分化神经元方面。
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来源期刊
Neurobiology of Disease
Neurobiology of Disease 医学-神经科学
CiteScore
11.20
自引率
3.30%
发文量
270
审稿时长
76 days
期刊介绍: Neurobiology of Disease is a major international journal at the interface between basic and clinical neuroscience. The journal provides a forum for the publication of top quality research papers on: molecular and cellular definitions of disease mechanisms, the neural systems and underpinning behavioral disorders, the genetics of inherited neurological and psychiatric diseases, nervous system aging, and findings relevant to the development of new therapies.
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