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首页> 外文期刊>The biochemical journal >Interaction of iron regulatory protein-1 (IRP-1) with ATP/ADP maintains a non-IRE-binding state
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Interaction of iron regulatory protein-1 (IRP-1) with ATP/ADP maintains a non-IRE-binding state

机译:铁调节蛋白1(IRP-1)与ATP / ADP的相互作用保持了非IRE结合状态

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pIn its aconitase-inactive form, IRP-1 (iron regulatory protein-1)/cytosolic aconitase binds to the IRE (iron-responsive element) of several mRNAs to effect post-transcriptional regulation. We have shown previously that IRP-1 has ATPase activity and that binding of ATP suppresses the IRP-1/IRE interaction. In the present study, we characterize the binding activity further. Binding is observed with both [α-sup32/supP]ATP and [α-sup32/supP]ADP, but not with [γ-sup32/supP]ATP. Recombinant IRP-1 binds approximately two molecules of ATP, and positive co-operativity is observed with a Hill coefficient of 1.67±0.36 (ECsub50/sub=44 μM) commencing at 1 μM ATP. Similar characteristics are observed with both apoprotein and the aconitase form. On binding, ATP is hydrolysed to ADP, and similar binding parameters and co-operativity are seen with ADP, suggesting that ATP hydrolysis is not rate limiting in product formation. The non-hydrolysable analogue AMP-PNP (adenosine 5′-[β,γ-imido]triphosphate) does not induce co-operativity. Upon incubation of IRP-1 with increasing concentrations of ATP or ADP, the protein migrates more slowly on agarose gel electrophoresis, and there is a shift in the CD spectrum. In this new state, adenosine nucleotide binding is competed for by other nucleotides (CTP, GTP and AMP-PNP), although ATP and ADP, but not the other nucleotides, partially stabilize the protein against spontaneous loss of aconitase activity when incubated at 37 °C. A mutant IRP-1(C437S) lacking aconitase activity shows only one ATP-binding site and lacks co-operativity. It has increased IRE-binding capacity and lower ATPase activity (iK/isubm/sub=75±17 nmol/min per mg of protein) compared with the wild-type protein (iK/isubm/sub=147±48 nmol/min per mg of protein). Under normal cellular conditions, it is predicted that ATP/ADP will maintain IRP-1 in a non-IRE-binding state./p
机译:> IRP-1(铁调节蛋白-1)/胞质乌头酸酶呈乌头酸酶失活形式,与几种mRNA的IRE(铁响应元件)结合,以实现转录后调控。先前我们已经证明IRP-1具有ATPase活性,并且ATP的结合抑制了IRP-1 / IRE相互作用。在本研究中,我们进一步表征了结合活性。 [α- 32 P] ATP和[α- 32 P] ADP均观察到结合,但[γ- 32 P] ADP则未观察到结合] ATP。重组IRP-1结合大约两个ATP分子,并且从1nM ATP开始观察到具有1.67±0.36的Hill系数(EC 50 =44μM)的正协同作用。载脂蛋白和乌头酸酶形式都观察到相似的特征。结合后,ATP水解为ADP,与ADP的结合参数和协同性相似,这表明ATP水解在产物形成过程中没有速率限制。不可水解的类似物AMP-PNP(腺苷5'-[β,γ-亚氨基]三磷酸)不引起协同作用。将IRP-1与浓度更高的ATP或ADP一起孵育后,该蛋白质在琼脂糖凝胶电泳上的迁移速度会更慢,并且CD光谱也会发生变化。在这种新状态下,尽管ATP和ADP而不是其他核苷酸能部分稳定蛋白质,使其在37℃温育时随乌头酸酶活性的丧失而使腺苷核苷酸的结合与其他核苷酸(CTP,GTP和AMP-PNP)竞争。 ℃。缺乏乌头酸酶活性的突变体IRP-1(C437S)仅显示一个ATP结合位点,并且缺乏协同作用。与野生型蛋白( K K m = 75±17 nmol / min / mg蛋白)相比,它具有更高的IRE结合能力和更低的ATPase活性。每毫克蛋白质> K m = 147±48 nmol / min。据预测,在正常细胞条件下,ATP / ADP可使IRP-1保持非IRE结合状态。

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