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ATP binds to proteasomal ATPases in pairs with distinct functional effects, implying an ordered reaction cycle

机译:ATP与蛋白酶体ATP酶成对结合,具有独特的功能作用,这意味着有序的反应周期

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In the eukaryotic 26S proteasome, the 20S particle is regulated by six AAA ATPase subunits and, in archaea, by a homologous ring complex, PAN. To clarify the role of ATP in proteolysis, we studied how nucleotides bind to PAN. Although PAN has six identical subunits, it binds ATPs in pairs, and its subunits exhibit three conformational states with high, low, or no affinity for ATP. When PAN binds two ATPγS molecules or two ATPγS plus two ADP molecules, it is maximally active in binding protein substrates, associating with the 20S particle, and promoting 20S gate opening. However, binding of four ATPγS molecules reduces these functions. The 26S proteasome shows similar nucleotide dependence. These findings imply an ordered cyclical mechanism in which two ATPase subunits bind ATP simultaneously and dock into the 20S. These results can explain how these hexameric ATPases interact with and "wobble" on top of the heptameric 20S proteasome.
机译:在真核生物26S蛋白酶体中,20S颗粒受六个AAA ATPase亚基调控,而在古细菌中,其受同源环复合物PAN调控。为了阐明ATP在蛋白水解中的作用,我们研究了核苷酸如何与PAN结合。尽管PAN具有六个相同的亚基,但它成对结合ATP,并且其亚基表现出三个构象状态,对ATP具有高,低或无亲和力。当PAN结合两个ATPγS分子或两个ATPγS加两个ADP分子时,它在结合蛋白底物,与20S颗粒缔合并促进20S门打开方面具有最大活性。但是,四个ATPγS分子的结合会降低这些功能。 26S蛋白酶体显示相似的核苷酸依赖性。这些发现暗示了一个有序的循环机制,其中两个ATPase亚基同时结合ATP并进入20S。这些结果可以解释这些六聚体ATP酶如何与七聚体20S蛋白酶体相互作用并在其上“摆动”。

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