Department of Ecology, Institute of Hydrobiology, School of Life Science and Technology, Key Laboratory of Eutrophication and Red Tide Prevention of Guangdong Higher Education Institutes, Engineering Research Center of Tropical and Subtropical Aquatic Ecological Engineering, Ministry of Education, Jinan University, Guangzhou, 510632, P.R. China.
Sci Rep. 2017 May 3;7(1):1401. doi: 10.1038/s41598-017-01573-y.
ChHP1BP3, a chromatin complex-related protein known with dynamic features, was identified as a ChHsp70 promoter-associated factor in Crassostrea hongkongensis by DNA-affinity purification and mass spectrometry analysis. Direct interaction between purified ChHP1BP3 and the ChHsp70 promoter region was demonstrated using EMSA. ChHp1bp3 depletion led to clear enhancements in ChHsp70 mRNA expression in C. hongkongensis hemocytes. However, ChHp1bp3 overexpression in heterologous HEK293T cells correlated with fluctuations in ChHsp70 transcription. Quantitative RT-PCR analysis showed that both ChHsp70 and ChHp1bp3 transcription were responsive to external physical/chemical stresses by heat, CdCl and NP. This indicated a plausible correlation between ChHsp70 and ChHp1bp3 in the stress-induced genetic regulatory pathway. While, the distinctive ChHp1bp3 expression patterns upon physical and chemical stresses suggest that the mechanisms that mediate ChHp1bp3 induction might be stress-specific. This study discovered a novel role for HP1BP3 as a negative regulator in controlling Hsp70 transcription in C. hongkongensis, and contributed to better understanding the complex regulatory mechanisms governing Hsp70 transcription.
ChHP1BP3 是一种与染色质复合物相关的蛋白,具有动态特征,通过 DNA 亲和纯化和质谱分析,被鉴定为香港牡蛎的 ChHsp70 启动子相关因子。通过 EMSA 证实了纯化的 ChHP1BP3 与 ChHsp70 启动子区域之间的直接相互作用。ChHp1bp3 耗尽导致香港牡蛎血细胞中 ChHsp70 mRNA 表达明显增强。然而,ChHp1bp3 在异源 HEK293T 细胞中的过表达与 ChHsp70 转录的波动相关。定量 RT-PCR 分析表明,ChHsp70 和 ChHp1bp3 的转录均对热、CdCl 和 NP 等外部物理/化学应激有反应。这表明 ChHsp70 和 ChHp1bp3 之间在应激诱导的遗传调控途径中可能存在相关性。然而,ChHp1bp3 在物理和化学应激下的独特表达模式表明,介导 ChHp1bp3 诱导的机制可能是应激特异性的。本研究发现了 HP1BP3 在调控香港牡蛎 Hsp70 转录中的新作用,作为一种负调控因子,并有助于更好地理解 Hsp70 转录的复杂调控机制。