Leu200Pro和Arg387His VRK1蛋白变体对远端遗传性运动神经病变中磷酸化目标和H4K16乙酰化的致病影响

IF 5.4 3区 材料科学 Q2 CHEMISTRY, PHYSICAL ACS Applied Energy Materials Pub Date : 2024-06-01 Epub Date: 2024-03-30 DOI:10.1007/s00109-024-02442-8
Aurora Campos-Díaz, Patricia Morejón-García, Eva Monte-Serrano, David Ros-Pardo, Iñigo Marcos-Alcalde, Paulino Gómez-Puertas, Pedro A Lazo
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引用次数: 0

摘要

人类 VRK1 基因的罕见隐性变体与多种运动神经元疾病(MND)有关,如肌萎缩性脊髓侧索硬化症、脊髓性肌萎缩症或远端遗传性运动神经病(dHMN)。一例 dHMN 患者携带两种新型 VRK1 基因变体,分别表达 Leu200Pro(L200P)和 Arg387His(R387H)变体蛋白,发现这些蛋白变体在功能上有所不同。Leu200Pro变体与催化结构域的几个变体一样,在不同底物(如组蛋白、p53或coilin)上丧失激酶活性。然而,远端 Arg387His 变体和远端 Trp375* (W375X)中国变体都位于低复杂度 C 端区域的末端和终止密码子的近端,它们在某些底物上保留了催化活性,在机理上它们的功能损伤是不同的。L200P 变体以及大多数 VRK1 致病变体都会损害 BAF 的磷酸化和组蛋白 H4K16 的乙酰化,而这两种作用分别是 DNA 附着到核膜和染色质进入 DNA 修复机制所必需的。R387H 变体会影响 H2AX 的磷酸化,这是不同类型 DNA 损伤反应的早期步骤。VRK1 蛋白变体的功能变异性及其不同组合很可能是导致与罕见 VRK1 致病变体相关的运动神经元和神经系统疾病临床表型异质性的一个因素。关键信息:与运动神经元疾病相关的 VRK1 变体在功能上各不相同。L200P 变体没有激酶活性,而 R387H 变体具有部分活性。VRK1 变体会改变 H4K16 乙酰化以及 coilin 和 BAF 磷酸化的丧失。VRK1 变体会改变 Cajal 体和 DNA 损伤反应。VRK1 变异组合决定了神经系统表型的异质性。
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Pathogenic effects of Leu200Pro and Arg387His VRK1 protein variants on phosphorylation targets and H4K16 acetylation in distal hereditary motor neuropathy.

Rare recessive variants in the human VRK1 gene are associated with several motor neuron diseases (MND), such as amyotrophic lateral sclerosis, spinal muscular atrophy, or distal hereditary motor neuropathies (dHMN). A case with dHMN carrying two novel VRK1 gene variants, expressing Leu200Pro (L200P) and Arg387His (R387H) variant proteins, identified that these protein variants are functionally different. The Leu200Pro variant shares with several variants in the catalytic domain the loss of the kinase activity on different substrates, such as histones, p53, or coilin. However, the distal Arg387His variant and the distal Trp375* (W375X) chinese variant, both located at the end of the low complexity C-terminal region and proximal to the termination codon, retain their catalytic activity on some substrates, and mechanistically their functional impairment is different. The L200P variant, as well as most VRK1 pathogenic variants, impairs the phosphorylation of BAF and histone H4K16 acetylation, which are required for DNA attachment to the nuclear envelope and chromatin accessibility to DNA repair mechanisms, respectively. The R387H variant impairs phosphorylation of H2AX, an early step in different types of DNA damage responses. The functional variability of VRK1 protein variants and their different combinations are a likely contributor to the clinical phenotypic heterogeneity of motor neuron and neurological diseases associated with rare VRK1 pathogenic variants. KEY MESSAGES: VRK1 variants implicated in motor neuron diseases are functionally different. The L200P variant is kinase inactive, and the R387H variant is partially active. VRK1 variants alter H4K16 acetylation and loss of coilin and BAF phosphorylation. VRK1 variants alter Cajal bodies and DNA damage responses. VRK1 variant combination determines the neurological phenotype heterogeneity.

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来源期刊
ACS Applied Energy Materials
ACS Applied Energy Materials Materials Science-Materials Chemistry
CiteScore
10.30
自引率
6.20%
发文量
1368
期刊介绍: ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.
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