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Protein kinase A mediates novel serine-584 phosphorylation of HDAC4

机译:蛋白激酶A介质新型丝氨酸-584 HDAC4的磷酸化

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Given the well-established diversified signaling pathways for histone deacetylase 4 (HDAC4) and the regulation of HDAC4 by several post-translational modifications (PTMs), including phosphorylation, sumoylation, and ubiquitination, an unbiased and detailed analysis of HDAC4 PTMs is needed. In this study, we used matrix-assisted laser desorption/ionization time of flight (MALDI-TOF/TOF) to describe phosphorylation at serine 584 (Ser584) along with already-known dual phosphorylation at serines 265 and 266 (Ser265/266), that together regulate HDAC4 activity. Overexpression of site-specific HDAC4 mutants (S584A, S265/266A) in HEK 293T cells, followed by HDAC activity assays, revealed the mutants to be less active than the wild-type protein. In vitro kinase assays have established that Ser584 and Ser265/266 are phosphorylated by protein kinase A (PKA). Luciferase assays driven by the myocyte enhancer factor 2 (MEF2) promoter and real-time PCR analysis of the MEF2 target genes show that the S584A and S265/266A mutants are less repressive than the wild-type. Furthermore, treatment with PKA activators such as 8-Bromo-cAMP and forskolin, and silencing either by shRNA or its inhibitor H-89 in a mouse myoblast cell line (C2C12) and in a non-muscle human cell line (K562), confirmed in vivo phosphorylation of HDAC4 in C2C12 but not in K562 cells, indicating the specific functional significance of HDAC4 phosphorylation in muscle cells. Thus, we identified PKA-induced Ser584 phosphorylation of HDAC4 as a yet unknown regulatory mechanism of the HDAC4-MEF2 axis.
机译:鉴于组蛋白脱乙酰酶4(HDAC4)的良好多样化的信号通路和HDAC4的调节通过几种翻译后修饰(PTMS),包括磷酸化,雄性和泛素化,需要对HDAC4 PTM的无偏异和详细分析。在该研究中,我们使用了基质辅助激光解吸/电离时间(MALDI-TOF / TOF)来描述丝氨酸584(SER584)的磷酸化以及丝氨酸265和266的已知的双磷酸化(Ser265 / 266),一起调节HDAC4活动。 HEK 293T细胞中的位点特异性HDAC4突变体(S584A,S265 / 266A)的过度表达,其次是HDAC活性测定,显示突变体比野生型蛋白质更少。体外激酶测定已经确定Ser584和Ser265 / 266通过蛋白激酶A(PKA)磷酸化。由肌细胞增强子因子2(MEF2)启动子驱动的荧光素酶测定和MEF2靶基因的实时PCR分析表明,S584A和S265 / 266A突变体比野生型更少压抑。此外,用PKA活化剂如8-溴 - 阵列和前克洛林处理,并通过ShRNA或其抑制剂H-89沉默于小鼠肌细胞系(C2C12)和非肌肉人体细胞系(K562)中,确认在C2C12中的HDAC4中的体内磷酸化但不在K562细胞中,表明HDAC4磷酸化在肌肉细胞中的特异性功能意义。因此,我们确定了PKA诱导的HDAC4的SER584磷酸化,作为HDAC4-MEF2轴的尚不清楚的调节机制。

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