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热休克蛋白90(Hsp90)活性对IκB激酶(IKK)生物合成以及组成型和诱导型IKK和核因子κB(NF-κB)激活的需求。

Requirement of Hsp90 activity for IkappaB kinase (IKK) biosynthesis and for constitutive and inducible IKK and NF-kappaB activation.

作者信息

Broemer Meike, Krappmann Daniel, Scheidereit Claus

机构信息

Max-Delbrück-Center for Molecular Medicine, Robert-Rössle Str. 10, 13092 Berlin, Germany.

出版信息

Oncogene. 2004 Jul 8;23(31):5378-86. doi: 10.1038/sj.onc.1207705.

Abstract

The molecular chaperone Hsp90 affects the function and fate of a number of signaling molecules. We have investigated the Hsp90 requirement for constitutive and inducible activity of the IkappaB kinase (IKK) complex and of NF-kappaB. Inhibition by the Hsp90 ATPase inhibitors, geldanamycin (GA) and radicicol (RC), revealed that Hsp90 controls IKKs at two levels, inducibility of enzymatic activity and biogenesis, which can be discriminated by short- and long-time GA incubation, respectively. Short-time inhibition of Hsp90 resulted in impaired IKK kinase activation by TNFalpha, IL-1beta or phorbolester PMA. Furthermore, GA inhibited constitutive activation of IKK and NF-kappaB in Hodgkin's lymphoma cells. Hsp90 function was also required for trans- and autophosphorylation of transfected IKKbeta. GA exposure for several hours resulted in a downmodulation of IKK complex alpha, beta and gamma subunits to various extent. Proteasome inhibition interfered with GA mediated IKK depletion and Hsp90 inhibition induced polyubiquitination of IKKalpha and beta during protein synthesis. In fact, GA blocked biogenesis of IKKalpha and IKKbeta but did not interfere with post-translational turnover. Together, these results define a dual requirement for Hsp90 as a regulator of NF-kappaB signaling by its general involvement in IKK activation and by its role in IKK homeostasis.

摘要

分子伴侣Hsp90影响多种信号分子的功能和命运。我们研究了Hsp90对IκB激酶(IKK)复合物和NF-κB组成型及诱导型活性的需求。Hsp90 ATP酶抑制剂格尔德霉素(GA)和radicicol(RC)的抑制作用表明,Hsp90在两个水平上控制IKK,即酶活性的诱导性和生物合成,这可分别通过GA短期和长期孵育来区分。短期抑制Hsp90会导致TNFα、IL-1β或佛波酯PMA对IKK激酶的激活受损。此外,GA抑制了霍奇金淋巴瘤细胞中IKK和NF-κB的组成型激活。转染的IKKβ的反式磷酸化和自身磷酸化也需要Hsp90发挥功能。GA暴露数小时会导致IKK复合物的α、β和γ亚基不同程度下调。蛋白酶体抑制会干扰GA介导的IKK消耗,并且Hsp90抑制在蛋白质合成过程中诱导IKKα和IKKβ发生多聚泛素化。实际上,GA阻断了IKKα和IKKβ的生物合成,但不干扰翻译后周转。总之,这些结果确定了Hsp90作为NF-κB信号调节因子的双重需求,即它普遍参与IKK激活及其在IKK稳态中的作用。

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