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新型DEAD盒RNA解旋酶(DP97)对核受体转录活性的调控

Regulation of nuclear receptor transcriptional activity by a novel DEAD box RNA helicase (DP97).

作者信息

Rajendran Ramji R, Nye Anne C, Frasor Jonna, Balsara Rashna D, Martini Paolo G V, Katzenellenbogen Benita S

机构信息

Department of Cell and Structural Biology, University of Illinois, Urbana, Illinois 61801, USA.

出版信息

J Biol Chem. 2003 Feb 14;278(7):4628-38. doi: 10.1074/jbc.M210066200. Epub 2002 Dec 3.

Abstract

We have identified a novel DEAD box RNA helicase (97 kDa, DP97) from a breast cancer cDNA library that interacts in a hormone-dependent manner with nuclear receptors and represses their transcriptional activity. DP97 has RNA-dependent ATPase activity, and mapping studies localize the interacting regions of DP97 and nuclear receptors to the C-terminal region of DP97 and the hormone binding/activation function-2 region of estrogen receptors (ER), as well as several other nuclear receptors. Repression by DP97 maps to a small region (amino acids 589-631) that has homology to a repression domain in the corepressor protein NCoR2/SMRTe. This region of DP97 is necessary and sufficient for its intrinsic repression activity. The N-terminal helicase region of DP97 is, however, dispensable for its transcriptional repressor activity. The knockdown of endogenous cellular DP97 by antisense DP97 or RNA interference (siRNA for DP97) results in significant enhancement of the expression of estradiol-ER-stimulated genes and attenuation of the repression of genes inhibited by the estradiol-ER. This implies that endogenous DP97 normally dampens stimulation and intensifies repression of estradiol-ER-regulated genes. Our findings add to the growing evidence that RNA helicases can associate with nuclear receptors and function as coregulators to modulate receptor transcriptional activity.

摘要

我们从乳腺癌cDNA文库中鉴定出一种新型DEAD盒RNA解旋酶(97 kDa,DP97),它以激素依赖的方式与核受体相互作用,并抑制其转录活性。DP97具有RNA依赖性ATP酶活性,定位研究将DP97与核受体的相互作用区域定位于DP97的C末端区域以及雌激素受体(ER)以及其他几种核受体的激素结合/激活功能2区域。DP97的抑制作用定位于一个小区域(氨基酸589 - 631),该区域与共抑制蛋白NCoR2/SMRTe中的抑制结构域具有同源性。DP97的这一区域对于其内在抑制活性是必需且充分的。然而,DP97的N末端解旋酶区域对于其转录抑制活性是可有可无的。通过反义DP97或RNA干扰(针对DP97的siRNA)敲低内源性细胞DP97会导致雌二醇 - ER刺激基因的表达显著增强,以及雌二醇 - ER抑制基因的抑制作用减弱。这意味着内源性DP97通常会减弱刺激并增强对雌二醇 - ER调节基因的抑制作用。我们的发现进一步证明了RNA解旋酶可以与核受体结合并作为共调节因子来调节受体转录活性。

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