Zhang Jun, Ma Zengyi, Wang Jiyan, Li Shulian, Zhang Yaqin, Wang Yuelin, Wang Mingli, Feng Xiaoli, Liu Xiang, Liu Guangchao, Lou Qiang, Cui Xiukun, Ma Yuanfang, Dong Zheng, Hu Yan-Zhong
Biochim Biophys Acta. 2014 Mar;1843(3):580-9. doi: 10.1016/j.bbamcr.2013.12.008.
Hsf4b, a key regulator of postnatal lens development, is subjected to posttranslational modifications including phosphorylation. However, the phosphorylation sites in Hsf4b and their biological effects on the transcription activity of Hsf4b are poorly understood. Here we examined 17 potential phosphorylation residues in Hsf4b with alanine-scanning assays and found that a T472A mutation diminished Hsf4b-mediated expression of Hsp25 and alphaB-crystallin. In contrast, the phosphomimetic mutation of T472D enhanced their expression. Further investigation demonstrated that Hsf4b could interact with nuclear-transporter importin beta-1 and Hsc70 via amino acids 246-320 and 320-493, respectively. T472A mutation reduced Hsf4bs interaction with importin beta-1, while enhancing its interaction with Hsc7O, resulting in Hsf4b cytosolic re-localization, protein instability and transcription activity attenuation. At the upstream, MEK6 was found to interact with Hsf4b and enhance Hsf4b's nuclear translocation and transcription activity, probably by phosphorylation at sites such as T472. Taken together, our results suggest that phosphotylation of Hsf4b at T472 by protein kinases such as MEI(6 regulates Hsf4b interaction with the importin V I -Hsc7O complex, resulting in blockade of its nuclear translocation and transcriptional activity of Hsf4b.
热休克因子4b(Hsf4b)是出生后晶状体发育的关键调节因子,会发生包括磷酸化在内的翻译后修饰。然而,Hsf4b中的磷酸化位点及其对Hsf4b转录活性的生物学影响尚不清楚。在这里,我们通过丙氨酸扫描分析检测了Hsf4b中的17个潜在磷酸化残基,发现T472A突变会降低Hsf4b介导的Hsp25和αB-晶状体蛋白的表达。相反,T472D的拟磷酸化突变增强了它们的表达。进一步的研究表明,Hsf4b可分别通过246-320位氨基酸和320-493位氨基酸与核转运蛋白输入蛋白β-1和Hsc70相互作用。T472A突变减少了Hsf4b与输入蛋白β-1的相互作用,同时增强了其与Hsc70的相互作用,导致Hsf4b在细胞质中重新定位、蛋白质不稳定和转录活性减弱。在上游,发现MEK6与Hsf4b相互作用,并可能通过T472等位点的磷酸化增强Hsf4b的核转位和转录活性。综上所述,我们的结果表明,MEK6等蛋白激酶使Hsf4b的T472位点磷酸化,调节Hsf4b与输入蛋白β1-Hsc70复合物的相互作用,导致其核转位受阻和Hsf4b的转录活性受到抑制。