PP2A negatively regulates the hypertrophic response by dephosphorylating HDAC2 S394 in the heart
EXPERIMENTAL AND MOLECULAR MEDICINE
Authors: Yoon, Somy; Kook, Taewon; Min, Hyun-Ki; Kwon, Duk-Hwa; Cho, Young Kuk; Kim, Mira; Shin, Sera; Joung, Hosouk; Jeong, Seung Hoon; Lee, Sumin; Kang, Gaeun; Park, Yunchul; Kim, Yong Sook; Ahn, Youngkeun; McMullen, Julie R.; Gergs, Ulrich; Neumann, Joachim; Kim, Kyung Keun; Kim, Jungchul; Nam, Kwang-Il; Kim, Young-Kook; Kook, Hyun; Eom, Gwang Hyeon
Abstract
Cardiac hypertrophy occurs in response to increased hemodynamic demand and can progress to heart failure. Identifying the key regulators of this process is clinically important. Though it is thought that the phosphorylation of histone deacetylase (HDAC) 2 plays a crucial role in the development of pathological cardiac hypertrophy, the detailed mechanism by which this occurs remains unclear. Here, we performed immunoprecipitation and peptide pull-down assays to characterize the functional complex of HDAC2. Protein phosphatase (PP) 2 A was confirmed as a binding partner of HDAC2. PPP2CA, the catalytic subunit of PP2A, bound to HDAC2 and prevented its phosphorylation. Transient overexpression of PPP2CA specifically regulated both the phosphorylation of HDAC2 S394 and hypertrophyassociated HDAC2 activation. HDAC2 S394 phosphorylation was increased in a dose-dependent manner by PP2A inhibitors. Hypertrophic stresses, such as phenylephrine in vitro or pressure overload in vivo, caused PPP2CA to dissociate from HDAC2. Forced expression of PPP2CA negatively regulated the hypertrophic response, but PP2A inhibitors provoked hypertrophy. Adenoviral delivery of a phosphomimic HDAC2 mutant, adenovirus HDAC2 S394E, successfully blocked the anti-hypertrophic effect of adenovirus-PPP2CA, implicating HDAC2 S394 phosphorylation as a critical event for the anti-hypertrophic response. PPP2CA transgenic mice were protected against isoproterenolinduced cardiac hypertrophy and subsequent cardiac fibrosis, whereas simultaneous expression of HDAC2 S394E in the heart did induce hypertrophy. Taken together, our results suggest that PP2A is a critical regulator of HDAC2 activity and pathological cardiac hypertrophy and is a promising target for future therapeutic interventions.
Multiple variants in 5q31.1 are associated with systemic lupus erythematosus susceptibility and subphenotypes in the Han Chinese population
BRITISH JOURNAL OF DERMATOLOGY
Authors: Wen, L. L.; Zhu, Z. W.; Yang, C.; Liu, L.; Zuo, X. B.; Morris, D. L.; Dou, J. F.; Ye, L.; Cheng, Y. Y.; Guo, H. M.; Huang, H. Q.; Lin, Y.; Zhu, C. H.; Tang, L. L.; Chen, M. Y.; Zhou, Y.; Ding, Y. T.; Liang, B.; Zhou, F. S.; Gao, J. P.; Tang, X. F.; Zheng, X. D.; Wang, W. J.; Yin, X. Y.; Tang, H. Y.; Sun, L. D.; Yang, S.; Zhang, X. J.; Sheng, Y. J.; Cui, Y.
Abstract
Background A previous study provided evidence for a genetic association between PPP2CA on 5q31.1 and systemic lupus erythematosus (SLE) across multi-ancestral cohorts, but failed to find significant evidence for an association in the Han Chinese population. Objectives To explore the association between this locus and SLE using data from our previously published genome-wide association study (GWAS). Methods Single-nucleotide polymorphisms (SNPs) rs7726414 and rs244689 (near TCF7 and PPP2CA in 5q31.1) were selected as candidate independent associations from a large-scale study in a Han Chinese population consisting of 1047 cases and 1205 controls. Subsequently, 3509 cases and 8246 controls were genotyped in two further replication studies. We then investigated the SNPs' associations with SLE subphenotypes and gene expression in peripheral blood mononuclear cells. Results Highly significant associations with SLE in the Han Chinese population were detected for SNPs rs7726414 and rs244689 by combining the genotype data from our previous GWAS and two independent replication cohorts. Further conditional analyses indicated that these two SNPs contribute to disease susceptibility independently. A significant association with SLE, age at diagnosis < 20 years, was found for rs7726414 (P = 0.001). The expression levels of TCF7 and PPP2CA messenger RNA in patients with SLE were significantly decreased compared with those in healthy controls. Conclusions This study found evidence for multiple associations with SLE in 5q31.1 at genome-wide levels of significance for the first time in a Han Chinese population, in a combined genotype dataset. These findings suggest that variants in the 5q31.1 locus not only provide novel insights into the genetic architecture of SLE, but also contribute to the complex subphenotypes of SLE.