Chu B, Soncin F, Price B D, Stevenson M A, Calderwood S K
Dana Farber Cancer Institute and Joint Center for Radiation Therapy, Harvard Medical School, Boston, Massachusetts 02115, USA.
J Biol Chem. 1996 Nov 29;271(48):30847-57. doi: 10.1074/jbc.271.48.30847.
Mammalian heat shock genes are regulated at the transcriptional level by heat shock factor-1 (HSF-1), a sequence-specific transcription factor. We have examined the role of serine phosphorylation of HSF-1 in the regulation of heat shock gene transcription. Our experiments show that mitogen-activated protein kinases (MAPKs) of the ERK-1 family phosphorylate HSF-1 on serine residues and repress the transcriptional activation of the heat shock protein 70B (HSP70B) promoter by HSF-1 in vivo. These effects of MAPK are transmitted through a specific serine residue (Ser-303) located in a proline-rich sequence within the transcriptional regulatory domain of human HSF-1. However, despite the importance of Ser-303 in transmitting the signal from the MAPK cascade to HSP70 transcription, there was no evidence that Ser-303 could be phosphorylated by MAPK in vitro, although an adjacent residue (Ser-307) was avidly phosphorylated by MAPK. Further studies revealed that Ser-303 is phosphorylated by glycogen synthase kinase 3 (GSK3) through a mechanism dependent on primary phosphorylation of Ser-307 by MAPK. Secondary phosphorylation of Ser-303 by GSK3 may thus repress the activity of HSF-1, and its requirement for priming by MAPK phosphorylation of Ser-307 provides a potential link between the MAPK cascade and HSF-1. Our experiments thus indicate that MAPK is a potent inhibitor of HSF-1 function and may be involved in repressing the heat shock response during normal growth and development and deactivating the heat shock response during recovery from stress.
哺乳动物热休克基因在转录水平上受热休克因子1(HSF-1)调控,HSF-1是一种序列特异性转录因子。我们研究了HSF-1的丝氨酸磷酸化在热休克基因转录调控中的作用。我们的实验表明,ERK-1家族的丝裂原活化蛋白激酶(MAPK)使HSF-1的丝氨酸残基磷酸化,并在体内抑制HSF-1对热休克蛋白70B(HSP70B)启动子的转录激活。MAPK的这些作用通过位于人HSF-1转录调控域内富含脯氨酸序列中的一个特定丝氨酸残基(Ser-303)传递。然而,尽管Ser-303在将信号从MAPK级联传递到HSP70转录过程中很重要,但没有证据表明Ser-303在体外能被MAPK磷酸化,尽管相邻残基(Ser-307)能被MAPK强烈磷酸化。进一步研究表明,Ser-303由糖原合酶激酶3(GSK3)磷酸化,其机制依赖于MAPK对Ser-307的初级磷酸化。因此,GSK3对Ser-303的二级磷酸化可能会抑制HSF-1的活性,而其对Ser-307的MAPK磷酸化引发的需求提供了MAPK级联与HSF-1之间的潜在联系。我们的实验因此表明,MAPK是HSF-1功能的有效抑制剂,可能参与在正常生长发育过程中抑制热休克反应以及在应激恢复过程中使热休克反应失活。