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脂磷素-α1磷酸化在其液-液相分离中的作用:由PPP2R5D/PP2A全酶调控

The role of liprin-α1 phosphorylation in its liquid-liquid phase separation: regulation by PPP2R5D/PP2A holoenzyme.

作者信息

Mayer Abigail, Derua Rita, Spahn Elijah, Verbinnen Iris, Zhang Yang, Wadzinski Brian, Swingle Mark R, Honkanen Richard, Janssens Veerle, Xia Houhui

出版信息

bioRxiv. 2024 Jun 22:2024.06.18.599485. doi: 10.1101/2024.06.18.599485.

Abstract

Liprin-α1 is a widely expressed scaffolding protein responsible for regulating cellular processes such as focal adhesion, cell motility, and synaptic transmission. Liprin-α1 interacts with many proteins including ELKS, GIT1, liprin-β, and LAR-family receptor tyrosine protein phosphatase. Through these protein-protein interactions, liprin-α1 assembles large higher-order molecular complexes; however, the regulation of this complex assembly/disassembly is unknown. Liquid-liquid phase separation (LLPS) is a process that concentrates proteins within cellular nano-domains to facilitate efficient spatiotemporal signaling in response to signaling cascades. While there is no report that liprin-α1 spontaneously undergoes LLPS, we found that GFP-liprin-α1 expressed in HEK293 cells occasionally forms droplet-like condensates. MS-based interactomics identified Protein Phosphatase 2A (PP2A)/B56δ (PPP2R5D) trimers as specific interaction partners of liprin-α1 through a canonical Short Linear Interaction Motif (SLiM) in its N-terminal dimerization domain. Mutation of this SLiM nearly abolished PP2A interaction, and resulted in significantly increased LLPS. GFP-liprin-α1 showed significantly increased droplet formation in HEK293 cells devoid of B56δ (PPP2R5D knockout), suggesting that PPP2R5D/PP2A holoenzyme inhibits liprin-α1 LLPS. Guided by reported liprin-α1 Ser/Thr phosphorylation sites, we found liprin-α1 phospho-mimetic mutant at serine 763 (S763E) is sufficient to drive its LLPS. Domain mapping studies of liprin-α1 indicated that the intrinsically disordered region, the N-terminal dimerization domain, and the SAM domains are all necessary for liprin-α1 LLPS. Finally, expression of p.E420K, a human PPP2R5D variant causing Houge-Janssens Syndrome type 1 (also known as Jordan's Syndrome), significantly compromised suppression of liprin-α1 LLPS. Our work identified B56δ-PP2A holoenzyme as an inhibitor of liprin-α1 LLPS via regulation at multiple phosphorylation sites.

摘要

脂磷素-α1是一种广泛表达的支架蛋白,负责调节细胞过程,如粘着斑、细胞运动和突触传递。脂磷素-α1与许多蛋白质相互作用,包括ELKS、GIT1、脂磷素-β和LAR家族受体酪氨酸蛋白磷酸酶。通过这些蛋白质-蛋白质相互作用,脂磷素-α1组装大型高阶分子复合物;然而,这种复合物组装/拆卸的调节机制尚不清楚。液-液相分离(LLPS)是一个将蛋白质浓缩在细胞纳米域内以促进响应信号级联的高效时空信号传导的过程。虽然没有报道脂磷素-α1会自发发生LLPS,但我们发现HEK293细胞中表达的GFP-脂磷素-α1偶尔会形成液滴状凝聚物。基于质谱的相互作用组学通过其N端二聚化结构域中的经典短线性相互作用基序(SLiM)鉴定出蛋白磷酸酶2A(PP2A)/B56δ(PPP2R5D)三聚体是脂磷素-α1的特异性相互作用伙伴。该SLiM的突变几乎消除了PP2A的相互作用,并导致LLPS显著增加。在缺乏B56δ(PPP2R5D基因敲除)的HEK293细胞中,GFP-脂磷素-α1的液滴形成显著增加,这表明PPP2R5D/PP2A全酶抑制脂磷素-α1的LLPS。根据已报道的脂磷素-α1丝氨酸/苏氨酸磷酸化位点,我们发现丝氨酸763(S763E)处的脂磷素-α1磷酸模拟突变体足以驱动其LLPS。脂磷素-α1的结构域映射研究表明,内在无序区域、N端二聚化结构域和SAM结构域对于脂磷素-α1的LLPS都是必需的。最后,导致1型豪格-扬森综合征(也称为乔丹综合征)的人类PPP2R5D变体p.E420K的表达显著损害了对脂磷素-α1 LLPS的抑制作用。我们的工作通过在多个磷酸化位点的调节,确定了B56δ-PP2A全酶是脂磷素-α1 LLPS的抑制剂。

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