Uma S, Hartson S D, Chen J J, Matts R L
Department of Biochemistry and Molecular Biology, Oklahoma State University, Stillwater, Oklahoma 74078, USA.
J Biol Chem. 1997 Apr 25;272(17):11648-56. doi: 10.1074/jbc.272.17.11648.
The heme-regulated eukaryotic initiation factor 2alpha (eIF-2alpha) kinase (HRI) interacts with hsp90 in situ in rabbit reticulocyte lysate (RRL). In this report, we have examined the role of hsp90 in the maturation of newly synthesized HRI in both hemin-supplemented and heme-deficient RRL. Analysis of translating polyribosomes indicated that hsp90 interacts with nascent HRI cotranslationally. Coimmunoadsorption of HRI with hsp90 by the 8D3 anti-hsp90 antibody indicated that this interaction persisted after release of newly synthesized HRI from ribosomes. Incubation of HRI in heme-deficient lysate resulted in the transformation of a portion of the HRI polypeptides into an active heme-regulatable eIF-2alpha kinase that exhibited slower electrophoretic mobility. Transformation of HRI was dependent on autophosphorylation, and transformed HRI was resistant to aggregation induced by treatment of RRL with N-ethylmaleimide. Transformed HRI did not coimmunoadsorb with hsp90, and regulation of the activity of transformed HRI by hemin was not hsp90-dependent. The hsp90 binding drug geldanamycin disrupted the interaction of hsp90 with HRI and inhibited the maturation of HRI into a form that was competent to undergo autophosphorylation. Additionally geldanamycin inhibited the transformation of HRI into a stable heme-regulatable kinase. These results indicate that hsp90 plays an obligatory role in HRI acquiring and maintaining a conformation that is competent to become transformed into an aggregation-resistant activable kinase.
血红素调节的真核起始因子2α(eIF-2α)激酶(HRI)在兔网织红细胞裂解物(RRL)中与hsp90原位相互作用。在本报告中,我们研究了hsp90在添加血红素和缺乏血红素的RRL中对新合成的HRI成熟的作用。对正在进行翻译的多核糖体的分析表明,hsp90在共翻译过程中与新生的HRI相互作用。用8D3抗hsp90抗体对HRI与hsp90进行共免疫吸附表明,在新合成的HRI从核糖体释放后,这种相互作用仍然存在。在缺乏血红素的裂解物中孵育HRI导致一部分HRI多肽转化为一种活性的、可被血红素调节的eIF-2α激酶,其电泳迁移率较慢。HRI的转化依赖于自身磷酸化,并且转化后的HRI对用N-乙基马来酰亚胺处理RRL诱导的聚集具有抗性。转化后的HRI不与hsp90共免疫吸附,并且血红素对转化后HRI活性的调节不依赖于hsp90。hsp90结合药物格尔德霉素破坏了hsp90与HRI的相互作用,并抑制了HRI成熟为能够进行自身磷酸化的形式。此外,格尔德霉素抑制HRI转化为稳定的、可被血红素调节的激酶。这些结果表明,hsp90在HRI获得并维持一种能够转化为抗聚集的可激活激酶的构象中起必不可少的作用。