Ishihara Keiichi, Yamagishi Nobuyuki, Hatayama Takumi
Department of Biochemistry, Kyoto Pharmaceutical University, 5 Nakauchi-cho, Misasagi, Yamashina-ku, Kyoto 607-8414, Japan.
Biochem J. 2003 May 1;371(Pt 3):917-25. doi: 10.1042/BJ20021331.
The 105 kDa heat-shock protein (Hsp) Hsp105 alpha is a mammalian stress protein that belongs to the HSP105/HSP110 family. We have shown previously that Hsp105 alpha exists as non-phosphorylated and phosphorylated forms in vivo, and is phosphorylated by protein kinase CK2 (CK2) in vitro. In this study, to elucidate the role of phosphorylation of Hsp105 alpha, we first analysed the site of phosphorylation of Hsp105 alpha by CK2. Peptide mapping analysis of Hsp105 alpha phosphorylated by CK2 and in vitro phosphorylation experiments using various deletion and substitution mutants of Hsp105 alpha revealed that Hsp105 alpha is phosphorylated at Ser(509) in the beta-sheet domain. Furthermore, Ser(509) in Hsp105 alpha was also phosphorylated in mammalian COS-7 cells, although other sites were phosphorylated as well. Next, we examined the effects of phosphorylation of Hsp105 alpha on its functions using CK2-phosphorylated Hsp105 alpha. Interestingly, Hsp105 alpha suppressed 70 kDa heat-shock cognate protein (Hsc70)-mediated protein folding, whereas the phosphorylation of Hsp105 alpha at Ser(509) abolished the inhibitory activity of Hsp105 alpha in vitro. In accordance with these findings, wild-type Hsp105 alpha, which was thought to be phosphorylated in vivo, had no effect on Hsp70-mediated refolding of heat-denatured luciferase, whereas a non-phosphorylatable mutant of Hsp105 alpha suppressed the Hsp70-mediated refolding of heat-denatured luciferase in mammalian cells. Thus it was suggested that CK2 phosphorylates Hsp105 alpha at Ser(509) and modulates the function of Hsp105 alpha. The regulation of Hsp105 alpha function by phosphorylation may play an important role in a variety of cellular events.
105 kDa热休克蛋白(Hsp)Hsp105α是一种属于HSP105/HSP110家族的哺乳动物应激蛋白。我们之前已经表明,Hsp105α在体内以非磷酸化和磷酸化形式存在,并且在体外可被蛋白激酶CK2(CK2)磷酸化。在本研究中,为了阐明Hsp105α磷酸化的作用,我们首先分析了CK2对Hsp105α的磷酸化位点。对CK2磷酸化的Hsp105α进行肽图谱分析以及使用Hsp105α的各种缺失和替代突变体进行体外磷酸化实验,结果表明Hsp105α在β-折叠结构域的Ser(509)处被磷酸化。此外,Hsp105α中的Ser(509)在哺乳动物COS-7细胞中也被磷酸化,尽管其他位点也被磷酸化。接下来,我们使用CK2磷酸化的Hsp105α研究了Hsp105α磷酸化对其功能的影响。有趣的是,Hsp105α抑制70 kDa热休克同源蛋白(Hsc70)介导的蛋白质折叠,而Hsp105α在Ser(509)处的磷酸化在体外消除了Hsp105α的抑制活性。与这些发现一致,被认为在体内被磷酸化的野生型Hsp105α对Hsp70介导的热变性荧光素酶的复性没有影响,而Hsp105α的不可磷酸化突变体在哺乳动物细胞中抑制了Hsp70介导的热变性荧光素酶的复性。因此,提示CK2使Hsp105α在Ser(509)处磷酸化并调节Hsp105α的功能。通过磷酸化对Hsp105α功能的调节可能在多种细胞事件中起重要作用。