Jo Seung Hee, Park Hyun Ji, Jung Haemyeong, Lee Ga Seul, Moon Jeong Hee, Kim Hyun-Soon, Lee Hyo-Jun, Jung Choonkyun, Cho Hye Sun
Plant Systems Engineering Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Daejeon 34141, Korea.
Core Research Facility & Analysis Center, KRIBB, Daejeon 34141, Republic of Korea.
Plant Cell. 2025 May 9;37(5). doi: 10.1093/plcell/koaf117.
Dephosphorylation of spliceosome components is an essential regulatory step for intron removal from pre-mRNA, thereby controlling gene expression. However, the specific phosphatase responsible for this dephosphorylation step has not been identified. Here, we show that Arabidopsis thaliana (Arabidopsis) PROTEIN PHOSPHATASE 2A B'η (PP2A B'η), a B subunit of PP2A, interacts with the splicing factors PRP18a, PRP16, and RH2 and facilitates their dephosphorylation by recognizing substrates through a conserved binding motif. This dephosphorylation is crucial for proper splicing of retained introns in heat stress-responsive genes, which is mediated by the PP2A interactor PRE-MRNA PROCESSING FACTOR 18a. Genetic inactivation of PP2A B'η abolished thermotolerance during seed germination and resulted in widespread intron retention in heat stress-responsive genes. Conversely, overexpression of PP2A B'η conferred enhanced thermotolerance, accompanied by the efficient removal of retained introns under heat stress. We demonstrate that a B regulatory subunit of PP2A plays a central role in dephosphorylating spliceosome components, regulating alternative splicing, facilitating acclimation to heat stress, and targeting specific spliceosome subunits that activate pre-mRNA splicing.
剪接体成分的去磷酸化是从前体mRNA中去除内含子从而控制基因表达的关键调控步骤。然而,负责这一去磷酸化步骤的具体磷酸酶尚未确定。在此,我们表明拟南芥蛋白磷酸酶2A B'η(PP2A B'η),即PP2A的一个B亚基,与剪接因子PRP18a、PRP16和RH2相互作用,并通过一个保守的结合基序识别底物来促进它们的去磷酸化。这种去磷酸化对于热应激反应基因中保留内含子的正确剪接至关重要,这一过程由PP2A相互作用蛋白前体mRNA加工因子18a介导。PP2A B'η的基因失活消除了种子萌发期间的耐热性,并导致热应激反应基因中广泛存在内含子保留现象。相反,PP2A B'η的过表达赋予了增强的耐热性,伴随着热应激下保留内含子的有效去除。我们证明PP2A的一个B调节亚基在去磷酸化剪接体成分、调节可变剪接、促进对热应激的适应以及靶向激活前体mRNA剪接的特定剪接体亚基方面发挥着核心作用。