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热休克后,热休克蛋白27(Hsp27)可促进剪接的恢复以及SRp38的再磷酸化。

Hsp27 enhances recovery of splicing as well as rephosphorylation of SRp38 after heat shock.

作者信息

Marin-Vinader Laura, Shin Chanseok, Onnekink Carla, Manley James L, Lubsen Nicolette H

机构信息

Department of Biochemistry, Radboud University Nijmegen, 6500 HB Nijmegen, The Netherlands.

出版信息

Mol Biol Cell. 2006 Feb;17(2):886-94. doi: 10.1091/mbc.e05-07-0596. Epub 2005 Dec 7.

Abstract

A heat stress causes a rapid inhibition of splicing. Exogenous expression of Hsp27 did not prevent that inhibition but enhanced the recovery of splicing afterward. Another small heat shock protein, alphaB-crystallin, had no effect. Hsp27, but not alphaB-crystallin, also hastened rephosphorylation of SRp38-dephosphorylated a potent inhibitor of splicing-after a heat shock, although it did not prevent dephosphorylation by a heat shock. The effect of Hsp27 on rephosphorylation of SRp38 required phosphorylatable Hsp27. A Hsp90 client protein was required for the effect of Hsp27 on recovery of spicing and on rephosphorylation of SRp38. Raising the Hsp70 level by either a pre-heat shock or by exogenous expression had no effect on either dephosphorylation of SRp38 during heat shock or rephosphorylation after heat shock. The phosphatase inhibitor calyculin A prevented dephosphorylation of SRp38 during a heat shock and caused complete rephosphorylation of SRp38 after a heat shock, indicating that cells recovering from a heat shock are not deficient in kinase activity. Together our data show that the activity of Hsp27 in restoring splicing is not due to a general thermoprotective effect of Hsp27, but that Hsp27 is an active participant in the (de)phosphorylation cascade controlling the activity of the splicing regulator SRp38.

摘要

热应激会导致剪接迅速受到抑制。热休克蛋白27(Hsp27)的外源表达并不能阻止这种抑制,但能增强随后剪接的恢复。另一种小热休克蛋白αB-晶状体蛋白则没有这种作用。Hsp27而非αB-晶状体蛋白,也能加速热休克后SRp38(一种有效的剪接抑制剂)去磷酸化后的再磷酸化,尽管它不能阻止热休克引起的去磷酸化。Hsp27对SRp38再磷酸化的作用需要可磷酸化的Hsp27。Hsp27对剪接恢复和SRp38再磷酸化的作用需要一种Hsp90客户蛋白。通过预热休克或外源表达提高Hsp70水平,对热休克期间SRp38的去磷酸化或热休克后的再磷酸化均无影响。磷酸酶抑制剂花萼海绵诱癌素A可阻止热休克期间SRp38的去磷酸化,并在热休克后导致SRp38完全再磷酸化,这表明从热休克中恢复的细胞激酶活性并不缺乏。我们的数据共同表明,Hsp27在恢复剪接中的活性并非源于其一般的热保护作用,而是Hsp27是控制剪接调节因子SRp38活性的(去)磷酸化级联反应中的一个积极参与者。

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