首页> 美国卫生研究院文献>The Journal of Biological Chemistry >HEAT Repeat 1 Motif Is Required for B56γ-containing Protein Phosphatase 2A (B56γ-PP2A) Holoenzyme Assembly and Tumor-suppressive Function
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HEAT Repeat 1 Motif Is Required for B56γ-containing Protein Phosphatase 2A (B56γ-PP2A) Holoenzyme Assembly and Tumor-suppressive Function

机译:含B56γ的蛋白磷酸酶2A(B56γ-PP2A)完整酶组装和抑瘤功能需要HEAT重复1个基序

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摘要

Protein phosphatase 2A (PP2A) enzyme consists of a heterodimeric core (AC core) comprising a scaffolding subunit (A), a catalytic subunit (C), and a variable regulatory subunit (B). Earlier studies suggest that upon DNA damage, a specific B subunit, B56γ, bridges the PP2A AC core to p53, leading to dephosphorylation of p53 at Thr-55, induction of the p53 transcriptional target p21, and the inhibition of cell proliferation and transformation. In addition to dephosphorylation of p53, B56γ-PP2A also inhibits cell proliferation and transformation by an unknown mechanism. B56γ contains 18 α-helices that are organized into eight HEAT (Huntington-elongation-A subunit-TOR) repeat motifs. Although previous crystal structure study has revealed the residues of B56γ that directly contact the A and C subunits, the contribution of HEAT repeats to holoenzyme assembly and to B56γ-PP2A tumor-suppressive function remains to be elucidated. Here, we show that HEAT repeat 1 is required for the interaction of B56γ with the PP2A AC core and, more importantly, for B56γ-PP2A tumor-suppressive function. Within this region, we identified a tumor-associated mutation, C39R, which disrupts the interaction of B56γ with the AC core and thus was unable to mediate dephosphorylation of p53 by PP2A. Furthermore, due to its lack of AC interaction, C39R was also unable to promote the p53-independent tumor-suppressive function of B56γ-PP2A. This study provides structural insight into the PP2A holoenzyme assembly and emphasizes the importance of HEAT repeat 1 in B56γ-PP2A tumor-suppressive function.
机译:蛋白磷酸酶2A(PP2A)酶由包含支架亚基(A),催化亚基(C)和可变调控亚基(B)的异二聚体核心(AC核心)组成。早期的研究表明,DNA受损后,特定的B亚基B56γ将PP2A AC核心桥接至p53,导致Thr-55处的p53磷酸化,诱导p53转录靶标p21以及抑制细胞增殖和转化。除p53的去磷酸化外,B56γ-PP2A还通过未知的机制抑制细胞增殖和转化。 B56γ包含18个α-螺旋,这些螺旋被组织成8个HEAT(亨廷顿延伸-A亚基-TOR)重复基序。尽管先前的晶体结构研究已经揭示了直接接触A和C亚基的B56γ残基,但HEAT重复序列对全酶组装和对B56γ-PP2A肿瘤抑制功能的贡献仍有待阐明。在这里,我们显示HEAT重复序列1是B56γ与PP2A AC核相互作用的必要条件,更重要的是,对于B56γ-PP2A肿瘤抑制功能是必需的。在该区域内,我们鉴定出肿瘤相关突变C39R,该突变破坏B56γ与AC核的相互作用,因此无法介导PP2A对p53的去磷酸化。此外,由于缺乏AC相互作用,C39R也不能促进B56γ-PP2A的不依赖p53的肿瘤抑制功能。这项研究提供了对PP2A全酶装配的结构见解,并强调了HEAT重复序列1在B56γ-PP2A肿瘤抑制功能中的重要性。

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