去泛素化酶Otub1通过调节γ亚基Gng2的稳定性调控脾B细胞的趋化反应

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-01-01 Epub Date: 2024-01-29 DOI:10.1080/10985549.2023.2290434
Vincent M Luo, Connie Shen, Samantha Worme, Aanya Bhagrath, Estelle Simo-Cheyou, Steven Findlay, Steven Hébert, William Wai Lam Poon, Zahra Aryanpour, Thomas Zhang, René P Zahedi, Jonathan Boulais, Zachary S Buchwald, Christoph H Borchers, Jean-Francois Côté, Claudia L Kleinman, Judith N Mandl, Alexandre Orthwein
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引用次数: 0

摘要

泛素蛋白酶体系统能将赖氨酸 48 链接的多泛素链共价连接到底物蛋白质上,从而将其定向降解,而去泛素化酶(DUB)则能逆转这一过程。这种翻译后修饰调节着先天性免疫和适应性免疫的关键特征,包括抗原呈递、蛋白质稳态和信号转导。在这里,我们发现表达量最高的 DUBs 之一 Otub1 的缺失会导致小鼠脾脏 B 细胞亚群发生变化,边缘区和过渡性 B 细胞显著增加,而滤泡 B 细胞随之减少。我们证明,Otub1 与异源三聚 G 蛋白 Gng2 的 γ 亚基相互作用,并调节其泛素化状态,从而控制 Gng2 的稳定性。Gng2 的近端图谱显示,与趋化因子信号转导、肌动蛋白细胞骨架和细胞迁移相关的伙伴富集。根据这些发现,我们发现 Otub1 缺失的 B 细胞在体外表现出更高的 Ca2+ 动量、F-肌动蛋白聚合和对 Cxcl12、Cxcl13 和 S1P 的趋化反应性,这在体内表现为 B 细胞在脾脏内的定位改变。总之,我们的研究数据证明,Otub1 是 B 细胞 G 蛋白偶联受体信号的新型调节器,可调节 B 细胞的分化和在脾脏中的定位。
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The Deubiquitylase Otub1 Regulates the Chemotactic Response of Splenic B Cells by Modulating the Stability of the γ-Subunit Gng2.

The ubiquitin proteasome system performs the covalent attachment of lysine 48-linked polyubiquitin chains to substrate proteins, thereby targeting them for degradation, while deubiquitylating enzymes (DUBs) reverse this process. This posttranslational modification regulates key features both of innate and adaptative immunity, including antigen presentation, protein homeostasis and signal transduction. Here we show that loss of one of the most highly expressed DUBs, Otub1, results in changes in murine splenic B cell subsets, leading to a significant increase in marginal zone and transitional B cells and a concomitant decrease in follicular B cells. We demonstrate that Otub1 interacts with the γ-subunit of the heterotrimeric G protein, Gng2, and modulates its ubiquitylation status, thereby controlling Gng2 stability. Proximal mapping of Gng2 revealed an enrichment in partners associated with chemokine signaling, actin cytoskeleton and cell migration. In line with these findings, we show that Otub1-deficient B cells exhibit greater Ca2+ mobilization, F-actin polymerization and chemotactic responsiveness to Cxcl12, Cxcl13 and S1P in vitro, which manifests in vivo as altered localization of B cells within the spleen. Together, our data establishes Otub1 as a novel regulator of G-protein coupled receptor signaling in B cells, regulating their differentiation and positioning in the spleen.

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7.20
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4.30%
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567
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